CN112562153B - Building site behavior personnel optimization method based on intelligent cloud platform - Google Patents

Building site behavior personnel optimization method based on intelligent cloud platform Download PDF

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Publication number
CN112562153B
CN112562153B CN202011216871.9A CN202011216871A CN112562153B CN 112562153 B CN112562153 B CN 112562153B CN 202011216871 A CN202011216871 A CN 202011216871A CN 112562153 B CN112562153 B CN 112562153B
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mobile terminal
handheld mobile
pcb
intelligent handheld
cloud server
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CN112562153A (en
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白金龙
万里
熊榆
洪敏�
胡宇
唐良艳
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Chongqing Hui Hui Information Technology Co ltd
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Chongqing Hui Hui Information Technology Co ltd
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    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07CTIME OR ATTENDANCE REGISTERS; REGISTERING OR INDICATING THE WORKING OF MACHINES; GENERATING RANDOM NUMBERS; VOTING OR LOTTERY APPARATUS; ARRANGEMENTS, SYSTEMS OR APPARATUS FOR CHECKING NOT PROVIDED FOR ELSEWHERE
    • G07C9/00Individual registration on entry or exit
    • G07C9/20Individual registration on entry or exit involving the use of a pass
    • G07C9/27Individual registration on entry or exit involving the use of a pass with central registration
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06VIMAGE OR VIDEO RECOGNITION OR UNDERSTANDING
    • G06V20/00Scenes; Scene-specific elements
    • G06V20/40Scenes; Scene-specific elements in video content
    • G06V20/41Higher-level, semantic clustering, classification or understanding of video scenes, e.g. detection, labelling or Markovian modelling of sport events or news items
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06VIMAGE OR VIDEO RECOGNITION OR UNDERSTANDING
    • G06V20/00Scenes; Scene-specific elements
    • G06V20/40Scenes; Scene-specific elements in video content
    • G06V20/49Segmenting video sequences, i.e. computational techniques such as parsing or cutting the sequence, low-level clustering or determining units such as shots or scenes
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07CTIME OR ATTENDANCE REGISTERS; REGISTERING OR INDICATING THE WORKING OF MACHINES; GENERATING RANDOM NUMBERS; VOTING OR LOTTERY APPARATUS; ARRANGEMENTS, SYSTEMS OR APPARATUS FOR CHECKING NOT PROVIDED FOR ELSEWHERE
    • G07C9/00Individual registration on entry or exit
    • G07C9/20Individual registration on entry or exit involving the use of a pass
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07CTIME OR ATTENDANCE REGISTERS; REGISTERING OR INDICATING THE WORKING OF MACHINES; GENERATING RANDOM NUMBERS; VOTING OR LOTTERY APPARATUS; ARRANGEMENTS, SYSTEMS OR APPARATUS FOR CHECKING NOT PROVIDED FOR ELSEWHERE
    • G07C9/00Individual registration on entry or exit
    • G07C9/20Individual registration on entry or exit involving the use of a pass
    • G07C9/22Individual registration on entry or exit involving the use of a pass in combination with an identity check of the pass holder
    • G07C9/23Individual registration on entry or exit involving the use of a pass in combination with an identity check of the pass holder by means of a password

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Abstract

The invention provides a construction site behavior personnel optimizing system based on an intelligent cloud platform, which comprises a safety helmet worn on the head and used for protecting the head from being damaged, wherein a PCB mounting seat used for fixedly mounting a PCB is arranged in the safety helmet, and the PCB is fixedly mounted on the PCB mounting seat; a PCB controller and a PCB wireless transceiver module connected with the PCB controller are arranged on the PCB; the PCB controller stores personal identity information of a construction worker, and also comprises a cloud server and an access control for the construction worker to enter and exit the construction site; entrance guard is provided with the entrance guard PCB board mount pad that is used for fixed mounting entrance guard PCB board on the entrance guard PCB board mount pad, entrance guard PCB board fixed mounting is provided with entrance guard wireless transceiver module on entrance guard PCB board. The invention can verify the personal safety of the construction workers entering the construction area and prevent the construction workers from being injured.

Description

Building site behavior personnel optimization method based on intelligent cloud platform
Technical Field
The invention relates to the technical field of building site personnel safety, in particular to a site behavior personnel optimization method based on an intelligent cloud platform.
Background
The safety helmet is a protective article for protecting the head from the impact and is made of steel or similar materials. Consists of a cap shell, a cap liner, a lower cheek band and a rear hoop. The cap shell is hemispherical, firm, smooth and elastic, and the impact and puncture kinetic energy of the hit object is mainly borne by the cap shell. A certain space is reserved between the cap shell and the cap liner, and the instantaneous impact force can be buffered and dispersed, so that the direct damage to the head is avoided or reduced. Impact absorbency, puncture resistance, lateral rigidity, electrical insulation, flame retardance are the requirements for the basic technical properties of the helmet. The safety helmet is widely applied to the production field of construction sites. However, some people do not wear a helmet when entering a construction site area due to a low safety awareness and the like, and thus suffer personal injury when an accident occurs. Patent application number 2019109997649, entitled "method, system, device and storage medium for identifying personnel without helmets", discloses obtaining at least one live-action image obtained by shooting the same area of a production site; respectively processing each live-action image by using a YOLO model; the YOLO model outputs identification results of personnel without the safety helmet corresponding to the live-action images respectively; selecting an optimal recognition result from the recognition results of the personnel without the safety helmet; marking personnel not wearing the safety helmet in each live-action image according to the optimal identification result.
Disclosure of Invention
The invention aims at least solving the technical problems in the prior art, and particularly creatively provides a construction site behavior personnel optimization method based on an intelligent cloud platform.
In order to achieve the above purpose, the invention provides a construction site personnel optimizing system based on an intelligent cloud platform, which comprises a safety helmet which is worn on the head and is used for protecting the head from injury, wherein a PCB mounting seat for fixedly mounting a PCB is arranged in the safety helmet, and the PCB is fixedly mounted on the PCB mounting seat; a PCB controller and a PCB wireless transceiver module connected with the PCB controller are arranged on the PCB;
the PCB controller stores personal identity information of construction workers, wherein the personal identity information of construction workers comprises one or any combination of names, contact phones and dormitory addresses; the contact telephone comprises a contact telephone of the constructor or and/or an emergency contact telephone of an emergency contact added by the constructor, and the emergency contact corresponding to the emergency contact telephone;
the system also comprises a cloud server and an access control device for a construction worker to enter and exit the construction site;
the entrance guard is provided with an entrance guard PCB mounting seat for fixedly mounting an entrance guard PCB, the entrance guard PCB is fixedly mounted on the entrance guard PCB mounting seat, the entrance guard PCB is provided with an entrance guard wireless transceiver module, and a data transceiver end of the entrance guard wireless transceiver module is connected with a data transceiver end of an entrance guard controller;
When a building worker waits to open the access control and enters a building site, the access control is communicated with a wireless transceiver module on the safety helmet through the access control wireless transceiver module; and the gate inhibition sends the generated gate inhibition code to the cloud server, and after verification is passed, the gate inhibition is opened.
In a preferred embodiment of the invention, the access control wireless transceiver module comprises one or any combination of an access control Blue Tooth module, an access control WiFi module and an access control NFC module;
when the access control wireless transceiver module is an access control Blue Tooth module, the wireless data transceiver end of the access control Blue Tooth module is connected with the Blue Tooth wireless transceiver data end of the access control controller; the entrance guard communicates with the safety helmet through Blue photon;
when the access control wireless transceiver module is an access control WiFi module, the wireless data transceiver end of the access control WiFi module is connected with the WiFi wireless transceiver data end of the access control controller; the entrance guard communicates with the safety helmet through WiFi;
when the access control wireless transceiver module is an access control NFC module, the wireless data transceiver end of the access control NFC module is connected with the NFC wireless data transceiver end of the access control controller; the entrance guard communicates with the safety helmet through NFC.
In a preferred embodiment of the invention, the PCB wireless transceiver module comprises one or any combination of a PCB Blue Tooth module, a PCB WiFi module and a PCB NFC module;
When the PCB wireless receiving and transmitting module is a PCB Blue Tooth module, the wireless data receiving and transmitting end of the PCB Blue Tooth module is connected with the Blue Tooth wireless receiving and transmitting data end of the PCB controller; the PCB communicates with the entrance guard through Blue Tooth;
when the PCB wireless receiving and transmitting module is a PCB WiFi module, the wireless data receiving and transmitting end of the PCB WiFi module is connected with the WiFi wireless receiving and transmitting data end of the PCB controller; the PCB communicates with the access control through WiFi;
when the PCB wireless receiving and transmitting module is a PCB NFC module, the wireless data receiving and transmitting end of the PCB NFC module is connected with the NFC wireless receiving and transmitting data end of the PCB controller; the PCB communicates with the access control through NFC.
In a preferred embodiment of the invention, the PCB wireless transceiver module is a PCB Blue Tooth module;
the entrance guard wireless transceiver module is an entrance guard Blue Tooth module;
when the building worker waits to open the entrance guard and gets into the building site, the entrance guard communicates with the Blue Tooth module on the safety helmet through entrance guard Blue Tooth module.
The invention also discloses an optimization method of the construction site behavioral personnel optimization system based on the intelligent cloud platform, which comprises the following steps:
s1, whether an access controller receives an access wireless transceiver module awakening command:
If the access controller receives the access wireless transceiver module awakening command, the access controller awakens the access wireless transceiver module;
if the access controller does not receive the wake-up command of the access wireless transceiver module, returning to the step S1;
s2, the access control is communicated with the safety helmet, and whether a construction worker wears the safety helmet is judged:
if the construction worker does not wear the safety helmet, the entrance guard sends out prompt voice;
if the building worker wears the safety helmet, the entrance guard sends the generated entrance guard code to the cloud server;
and S3, after the cloud server receives the door forbidden code, the cloud server verifies, and after verification is passed, the cloud server sends an entrance guard door opening code to the entrance guard, and the entrance guard is opened.
In a preferred embodiment of the present invention, in step S2, the method for generating the gate inhibition code by the gate inhibition includes:
the entrance guard obtains personal identity information of construction workers stored in the safety helmet and carries out hash function operation to obtain an entrance guard code;
Figure SMS_1
o () represents a hash function operation;
x represents personal identity information of construction workers;
x represents a forbidden gate code;
Figure SMS_2
representing an access code update character string;
-representing a string connector;
the personal identity information x of the construction workers is x 1 、x 2 、x 3 、x 4 、x 5 One or any combination of the above;
Wherein x is 1 A name representing a construction worker;
x 2 a contact phone representing a construction worker;
x 3 representing dormitory addresses of construction workers;
x 4 a name representing the emergency contact;
x 5 an emergency contact telephone representing an emergency contact;
when the personal identity information x of the construction workers is x 1 、x 2 、x 3 、x 4 、x 5 One of them;
when the personal identity information x of the construction workers is x 1 、x 2 、x 3 、x 4 、x 5 Two, three, four, five hours; sequentially numbering the two components, wherein the sequence corresponds to x 1 ′、x 2 ′,x 1 ′、x 2 ′、x 3 ′,x 1 ′、x 2 ′、x 3 ′、x 4 ′,x 1 ′、x 2 ′、x 3 ′、 x 4 ′、x 5 ′;x=x 1 ′-x 2 ' or x 1 ′-x 2 ′-x 3 ' or x 1 ′-x 2 ′-x 3 ′-x 4 ' or x 1 ′-x 2 ′-x 3 ′-x 4 ′-x 5 'A'; -representing a string connector;
i.e. the personal identity information x of the construction workers is x 1 、x 2 、x 3 、x 4 、x 5 Secondly, the second time is that; sequentially numbering the two components, wherein the sequence corresponds to x 1 ′、x 2 ′;x=x 1 ′-x 2 ′;
The personal identity information x of the construction worker is x 1 、x 2 、x 3 、x 4 、x 5 Thirdly, the third step is to use the device; sequentially numbering the two components, wherein the sequence corresponds to x 1 ′、x 2 ′、x 3 ′;x=x 1 ′-x 2 ′-x 3 ′;
The personal identity information x of the construction worker is x 1 、x 2 、x 3 、x 4 、x 5 Four hours; sequentially numbering the two components, wherein the sequence corresponds to x 1 ′、x 2 ′、x 3 ′、x 4 ′;x=x 1 ′-x 2 ′-x 3 ′-x 4 ′;
The personal identity information x of the construction worker is x 1 、x 2 、x 3 、x 4 、x 5 Fifthly, performing operation; sequentially numbering the two components, wherein the sequence corresponds to x 1 ′、x 2 ′、x 3 ′、x 4 ′、x 5 ′;x=x 1 ′-x 2 ′-x 3 ′-x 4 ′-x 5 ′。
In a preferred embodiment of the present invention, in step S3, the method for generating and storing the cloud end gate inhibition code in the cloud end server by the cloud end server includes:
performing hash function operation on the personal identity information of the construction workers recorded in the cloud server to obtain Yun Duanmen forbidden codes;
Figure SMS_3
o () represents a hash function operation;
x' represents personal identity information of a construction worker input into the cloud server;
x' represents a cloud end gate forbidden code;
Figure SMS_4
representing an access code update character string;
-representing a string connector;
the personal identity information x' of the construction workers recorded in the cloud server is x 1 ″、x 2 ″、x 3 ″、x 4 ″、x 5 "one or any combination;
wherein x is 1 "represents the name of the construction worker entering the cloud server;
x 2 "means contact phone of construction worker entered into cloud server;
x 3 "means dormitory address of construction worker entered into cloud server;
x 4 "represents the name of the emergency contact entered into the cloud server;
x 5 "emergency contact phone representing emergency contact entered into cloud server;
when the personal identity information x' of the construction worker recorded in the cloud server is x 1 ″、x 2 ″、x 3 ″、x 4 ″、x 5 One of the two;
when the personal identity information x' of the construction worker recorded in the cloud server is x 1 ″、x 2 ″、x 3 ″、x 4 ″、x 5 "second, third, fourth, fifth hour; sequentially numbering the two components, wherein the sequence corresponds to x 1 ″′、x 2 ″′,x 1 ″′、x 2 ″′、x 3 ″′,x 1 ″′、 x 2 ″′、x 3 ″′、x 4 ″′,x 1 ″′、x 2 ″′、x 3 ″′、x 4 ″′、x 5 ″′;x′=x 1 ″′-x 2 "or x 1 ″′-x 2 ″′-x 3 "or x 1 ″′-x 2 ″′-x 3 ″′-x 4 "or x 1 ″′-x 2 ″′-x 3 ″′-x 4 ″′-x 5 "3"; -representing a string connector;
namely, the personal identity information x' of the construction worker recorded into the cloud server is x 1 ″、x 2 ″、x 3 ″、x 4 ″、x 5 Second time; sequentially numbering the two components, wherein the sequence corresponds to x 1 ″′、x 2 ″′;x′=x 1 ″′-x 2 ″′;
Building worker personal identity information x' recorded into cloud server is x 1 ″、x 2 ″、x 3 ″、x 4 ″、x 5 Third, the third time; sequentially numbering the two components, wherein the sequence corresponds to x 1 ″′、x 2 ″′、x 3 ″′;x′=x 1 ″′-x 2 ″′-x 3 ″′;
Building worker personal identity information x' recorded into cloud server is x 1 ″、x 2 ″、x 3 ″、x 4 ″、x 5 "four hours; sequentially numbering the two components, wherein the sequence corresponds to x 1 ″′、x 2 ″′、x 3 ″′、x 4 ″′;x′=x 1 ″′-x 2 ″′-x 3 ″′-x 4 ″′;
Building worker personal identity information x' recorded into cloud server is x 1 ″、x 2 ″、x 3 ″、x 4 ″、x 5 Five hours; sequentially numbering the two components, wherein the sequence corresponds to x 1 ″′、x 2 ″′、x 3 ″′、x 4 ″′、x 5 ″′;x′=x 1 ″′-x 2 ″′-x 3 ″′-x 4 ″′-x 5 ″′;
The cloud server judges whether the access control code stored in the cloud server is consistent with the access control code received by the access control cloud server:
if the door control code stored in the cloud server is consistent with the door control code received by the door control cloud server, the cloud server sends the door control door opening code to the door control, and the door control is opened;
if the access control code stored in the cloud server is inconsistent with the access control code received by the access control cloud server, transmitting the video image of the shot time period to the cloud server.
In a preferred embodiment of the present invention, in step S2, the method for generating the gate inhibition code by the gate inhibition includes:
the access control obtains the physical address of the PCB wireless transceiver module in the safety helmet to perform hash function operation to obtain an access control code;
Figure SMS_5
o () represents a hash function operation;
z represents the physical address of the PCB wireless transceiver module in the helmet;
z represents a gate inhibition code;
Figure SMS_6
representing an access code update character string;
-representing a string connector;
the physical address z of the PCB wireless transceiver module in the safety helmet is z 1 、z 2 、z 3 One or any combination of the above;
wherein z is 1 Representing the physical address of the PCB Blue Tooth module;
z 2 representing the physical address of the PCB WiFi module;
z 3 representing the physical address of the PCB NFC module;
when the physical address z of the PCB wireless transceiver module in the safety helmet is z 1 、z 2 、z 3 One of them;
when the physical address z of the PCB wireless transceiver module in the safety helmet is z 1 、z 2 、z 3 Second and third; sequentially numbering the two components, wherein the corresponding components are z 1 ′、z 2 ′,z 1 ′、z 2 ′、z 3 ′;z=z 1 ′-z 2 ' or z 1 ′-z 2 ′-z 3 'A'; -representing a string connector;
namely, the physical address z of the PCB wireless transceiver module in the safety helmet is z 1 、z 2 、z 3 Secondly, the second time is that; sequentially numbering the two components, wherein the corresponding components are z 1 ′、z 2 ′;z=z 1 ′-z 2 ′;
Physical address z of PCB wireless transceiver module in safety helmet is z 1 、z 2 、z 3 Thirdly, the third step is to use the device; sequentially numbering the two components, wherein the corresponding components are z 1 ′、z 2 ′、z 3 ′;z=z 1 ′-z 2 ′-z 3 ′。
In a preferred embodiment of the present invention, in step S3, the method for generating and storing the cloud end gate inhibition code in the cloud end server by the cloud end server includes:
performing hash function operation on the physical address of the PCB wireless transceiver module recorded in the cloud server to obtain Yun Duanmen forbidden codes;
Figure SMS_7
o () represents a hash function operation;
h' represents the physical address of the PCB wireless transceiver module input into the cloud server;
h' represents a cloud end gate forbidden code;
Figure SMS_8
representing an access code update character string;
-representing a string connector;
the physical address h' of the wireless transceiver module of the PCB is recorded as h 1 ″、h 2 ″、h 3 "one of orAny combination;
wherein h is 1 "the physical address of the PCB Blue Tooth module recorded in the cloud server;
h 2 "the physical address of the PCB WiFi module recorded in the cloud server;
h 3 "represents the physical address of the PCB NFC module entered into the cloud server;
when the physical address h' of the PCB wireless transceiver module input into the cloud server is h 1 ″、h 2 ″、h 3 One of the two;
when the physical address h' of the PCB wireless transceiver module input into the cloud server is h 1 ″、h 2 ″、h 3 Second and third times; sequentially numbering the two parts, wherein the sequence is corresponding to h 1 ″、h 2 ″,h 1 ″、h 2 ″、h 3 ″;h′=h 1 ″-h 2 "or h' =h 1 ″-h 2 ″ -h 3 "C"; -representing a string connector;
namely, the physical address h' of the PCB wireless transceiver module input into the cloud server is h 1 ″、h 2 ″、h 3 Second time; sequentially numbering the two parts, wherein the sequence is corresponding to h 1 ″、h 2 ″;h′=h 1 ″-h 2 ″;
The physical address h' of the PCB wireless transceiver module recorded in the cloud server is h 1 ″、h 2 ″、h 3 Second and third times; sequentially numbering the two parts, wherein the sequence is corresponding to h 1 ″、h 2 ″,h 1 ″、h 2 ″、h 3 ″;h′=h 1 ″-h 2 "or h' =h 1 ″-h 2 ″-h 3 ″;
The cloud server judges whether the access control code stored in the cloud server is consistent with the access control code received by the access control cloud server:
if the door control code stored in the cloud server is consistent with the door control code received by the door control cloud server, the cloud server sends the door control door opening code to the door control, and the door control is opened;
if the access control code stored in the cloud server is inconsistent with the access control code received by the access control cloud server, transmitting the video image of the shot time period to the cloud server.
In a preferred embodiment of the present invention, in step S1, the method of triggering the access controller to wake up the access control wireless transceiver module includes manual triggering or/and automatic triggering.
In conclusion, by adopting the technical scheme, the personal safety verification can be carried out on the construction workers entering the construction area, and the construction workers are prevented from being injured.
Additional aspects and advantages of the invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention.
Drawings
The foregoing and/or additional aspects and advantages of the invention will become apparent and may be better understood from the following description of embodiments taken in conjunction with the accompanying drawings in which:
Fig. 1 is a schematic block diagram of a flow of the present invention.
Detailed Description
Embodiments of the present invention are described in detail below, examples of which are illustrated in the accompanying drawings, wherein like or similar reference numerals refer to like or similar elements or elements having like or similar functions throughout. The embodiments described below by referring to the drawings are illustrative only and are not to be construed as limiting the invention.
The invention provides a construction site behavior personnel optimizing system based on an intelligent cloud platform, which comprises a safety helmet worn on the head and used for protecting the head from being damaged, wherein a PCB mounting seat used for fixedly mounting a PCB is arranged in the safety helmet, and the PCB is fixedly mounted on the PCB mounting seat; a PCB controller and a PCB wireless transceiver module connected with the PCB controller are arranged on the PCB;
the PCB controller stores personal identity information of construction workers, wherein the personal identity information of construction workers comprises one or any combination of names, contact phones and dormitory addresses; the contact telephone comprises a contact telephone of the constructor or and/or an emergency contact telephone of an emergency contact added by the constructor, and the emergency contact corresponding to the emergency contact telephone;
The system also comprises a cloud server and an access control device for a construction worker to enter and exit the construction site;
the entrance guard is provided with an entrance guard PCB mounting seat for fixedly mounting an entrance guard PCB, the entrance guard PCB is fixedly mounted on the entrance guard PCB mounting seat, the entrance guard PCB is provided with an entrance guard wireless transceiver module, and a data transceiver end of the entrance guard wireless transceiver module is connected with a data transceiver end of an entrance guard controller;
when a building worker waits to open the access control and enters a building site, the access control is communicated with a wireless transceiver module on the safety helmet through the access control wireless transceiver module; and the gate inhibition sends the generated gate inhibition code to the cloud server, and after verification is passed, the gate inhibition is opened.
In a preferred embodiment of the invention, the access control wireless transceiver module comprises one or any combination of an access control Blue Tooth module, an access control WiFi module and an access control NFC module;
when the access control wireless transceiver module is an access control Blue Tooth module, the wireless data transceiver end of the access control Blue Tooth module is connected with the Blue Tooth wireless transceiver data end of the access control controller; the entrance guard communicates with the safety helmet through Blue photon;
when the access control wireless transceiver module is an access control WiFi module, the wireless data transceiver end of the access control WiFi module is connected with the WiFi wireless transceiver data end of the access control controller; the entrance guard communicates with the safety helmet through WiFi;
When the access control wireless transceiver module is an access control NFC module, the wireless data transceiver end of the access control NFC module is connected with the NFC wireless data transceiver end of the access control controller; the entrance guard communicates with the safety helmet through NFC.
In a preferred embodiment of the invention, the PCB wireless transceiver module comprises one or any combination of a PCB Blue Tooth module, a PCB WiFi module and a PCB NFC module;
when the PCB wireless receiving and transmitting module is a PCB Blue Tooth module, the wireless data receiving and transmitting end of the PCB Blue Tooth module is connected with the Blue Tooth wireless receiving and transmitting data end of the PCB controller; the PCB communicates with the entrance guard through Blue Tooth;
when the PCB wireless receiving and transmitting module is a PCB WiFi module, the wireless data receiving and transmitting end of the PCB WiFi module is connected with the WiFi wireless receiving and transmitting data end of the PCB controller; the PCB communicates with the access control through WiFi;
when the PCB wireless receiving and transmitting module is a PCB NFC module, the wireless data receiving and transmitting end of the PCB NFC module is connected with the NFC wireless receiving and transmitting data end of the PCB controller; the PCB communicates with the access control through NFC.
In a preferred embodiment of the invention, the PCB wireless transceiver module is a PCB Blue Tooth module;
the entrance guard wireless transceiver module is an entrance guard Blue Tooth module;
When the building worker waits to open the entrance guard and gets into the building site, the entrance guard communicates with the Blue Tooth module on the safety helmet through entrance guard Blue Tooth module.
The invention also discloses an optimization method of the construction site behavioral personnel optimization system based on the intelligent cloud platform, as shown in fig. 1, comprising the following steps:
s1, whether an access controller receives an access wireless transceiver module awakening command:
if the access controller receives the access wireless transceiver module awakening command, the access controller awakens the access wireless transceiver module;
if the access controller does not receive the wake-up command of the access wireless transceiver module, returning to the step S1;
s2, the access control is communicated with the safety helmet, and whether a construction worker wears the safety helmet is judged:
if the construction worker does not wear the safety helmet, the entrance guard sends out prompt voice;
if the building worker wears the safety helmet, the entrance guard sends the generated entrance guard code to the cloud server;
and S3, after the cloud server receives the door forbidden code, the cloud server verifies, and after verification is passed, the cloud server sends an entrance guard door opening code to the entrance guard, and the entrance guard is opened.
In a preferred embodiment of the present invention, in step S2, the method for generating the gate inhibition code by the gate inhibition includes:
The entrance guard obtains personal identity information of construction workers stored in the safety helmet and carries out hash function operation to obtain an entrance guard code;
Figure SMS_9
o () represents a hash function operation; the hash function operation of the present invention is not limited to MD5, but may be SHA-1 or SHa244 or other types of hash function operations.
x represents personal identity information of construction workers;
x represents a forbidden gate code;
Figure SMS_10
representing an access code update character string;
-representing a string connector;
the personal identity information x of the construction workers is x 1 、x 2 、x 3 、x 4 、x 5 One or any combination of the above;
wherein x is 1 A name representing a construction worker;
x 2 a contact phone representing a construction worker;
x 3 representing dormitory addresses of construction workers;
x 4 a name representing the emergency contact;
x 5 an emergency contact telephone representing an emergency contact;
when the personal identity information x of the construction workers is x 1 、x 2 、x 3 、x 4 、x 5 One of them;
when the personal identity information x of the construction workers is x 1 、x 2 、x 3 、x 4 、x 5 Two, three, four, five hours; to its sequenceNumbering in turn corresponds to x 1 ′、x 2 ′,x 1 ′、x 2 ′、x 3 ′,x 1 ′、x 2 ′、x 3 ′、x 4 ′,x 1 ′、x 2 ′、x 3 ′、 x 4 ′、x 5 ′;x=x 1 ′-x 2 ' or x 1 ′-x 2 ′-x 3 ' or x 1 ′-x 2 ′-x 3 ′-x 4 ' or x 1 ′-x 2 ′-x 3 ′-x 4 ′-x 5 'A'; -representing a string connector;
i.e. the personal identity information x of the construction workers is x 1 、x 2 、x 3 、x 4 、x 5 Secondly, the second time is that; sequentially numbering the two components, wherein the sequence corresponds to x 1 ′、x 2 ′;x=x 1 ′-x 2 ′;
The personal identity information x of the construction worker is x 1 、x 2 、x 3 、x 4 、x 5 Thirdly, the third step is to use the device; sequentially numbering the two components, wherein the sequence corresponds to x 1 ′、x 2 ′、x 3 ′;x=x 1 ′-x 2 ′-x 3 ′;
The personal identity information x of the construction worker is x 1 、x 2 、x 3 、x 4 、x 5 Four hours; sequentially numbering the two components, wherein the sequence corresponds to x 1 ′、x 2 ′、x 3 ′、x 4 ′;x=x 1 ′-x 2 ′-x 3 ′-x 4 ′;
The personal identity information x of the construction worker is x 1 、x 2 、x 3 、x 4 、x 5 Fifthly, performing operation; sequentially numbering the two components, wherein the sequence corresponds to x 1 ′、x 2 ′、x 3 ′、x 4 ′、x 5 ′;x=x 1 ′-x 2 ′-x 3 ′-x 4 ′-x 5 ′。
In a preferred embodiment of the present invention, in step S3, the method for generating and storing the cloud end gate inhibition code in the cloud end server by the cloud end server includes:
performing hash function operation on the personal identity information of the construction workers recorded in the cloud server to obtain Yun Duanmen forbidden codes;
Figure SMS_11
o () represents a hash function operation;
x' represents personal identity information of a construction worker input into the cloud server;
x' represents a cloud end gate forbidden code;
Figure SMS_12
representing an access code update character string;
-representing a string connector;
the personal identity information x' of the construction workers recorded in the cloud server is x 1 ″、x 2 ″、x 3 ″、x 4 ″、x 5 "one or any combination;
wherein x is 1 "represents the name of the construction worker entering the cloud server;
x 2 "means contact phone of construction worker entered into cloud server;
x 3 "means dormitory address of construction worker entered into cloud server;
x 4 "represents the name of the emergency contact entered into the cloud server;
x 5 "emergency contact phone representing emergency contact entered into cloud server;
When the personal identity information x' of the construction worker recorded in the cloud server is x 1 ″、x 2 ″、x 3 ″、x 4 ″、x 5 One of the two;
when the personal identity information x' of the construction worker recorded in the cloud server is x 1 ″、x 2 ″、x 3 ″、x 4 ″、x 5 "second, third, fourth,Fifthly, performing operation; sequentially numbering the two components, wherein the sequence corresponds to x 1 ″′、x 2 ″′,x 1 ″′、x 2 ″′、x 3 ″′,x 1 ″′、 x 2 ″′、x 3 ″′、x 4 ″′,x 1 ″′、x 2 ″′、x 3 ″′、x 4 ″′、x 5 ″′;x′=x 1 ″′-x 2 "or x 1 ″′-x 2 ″′-x 3 "or x 1 ″′-x 2 ″′-x 3 ″′-x 4 "or x 1 ″′-x 2 ″′-x 3 ″′-x 4 ″′-x 5 "3"; -representing a string connector;
namely, the personal identity information x' of the construction worker recorded into the cloud server is x 1 ″、x 2 ″、x 3 ″、x 4 ″、x 5 Second time; sequentially numbering the two components, wherein the sequence corresponds to x 1 ″′、x 2 ″′;x′=x 1 ″′-x 2 ″′;
Building worker personal identity information x' recorded into cloud server is x 1 ″、x 2 ″、x 3 ″、x 4 ″、x 5 Third, the third time; sequentially numbering the two components, wherein the sequence corresponds to x 1 ″′、x 2 ″′、x 3 ″′;x′=x 1 ″′-x 2 ″′-x 3 ″′;
Building worker personal identity information x' recorded into cloud server is x 1 ″、x 2 ″、x 3 ″、x 4 ″、x 5 "four hours; sequentially numbering the two components, wherein the sequence corresponds to x 1 ″′、x 2 ″′、x 3 ″′、x 4 ″′;x′=x 1 ″′-x 2 ″′-x 3 ″′-x 4 ″′;
Building worker personal identity information x' recorded into cloud server is x 1 ″、x 2 ″、x 3 ″、x 4 ″、x 5 Five hours; sequentially numbering them and corresponding toIs x 1 ″′、x 2 ″′、x 3 ″′、x 4 ″′、x 5 ″′;x′=x 1 ″′-x 2 ″′-x 3 ″′-x 4 ″′-x 5 ″′;
The cloud server judges whether the access control code stored in the cloud server is consistent with the access control code received by the access control cloud server:
if the door control code stored in the cloud server is consistent with the door control code received by the door control cloud server, the cloud server sends the door control door opening code to the door control, and the door control is opened;
If the access control code stored in the cloud server is inconsistent with the access control code received by the access control cloud server, transmitting the video image of the shot time period to the cloud server. The video image transmission to the cloud server comprises the following steps:
the first step: dividing videos to be uploaded into I videos according to the sequence, wherein the I videos are respectively a 1 st video to be uploaded and divided video, a 2 nd video to be uploaded and divided video, a 3 rd video to be uploaded and divided video, … … and an I video to be uploaded and divided video;
and a second step of: the method comprises the steps of respectively carrying out hash operation on a video to be uploaded and a divided video to be uploaded 1, a divided video to be uploaded 2, a divided video to be uploaded 3, … … and a divided video to be uploaded I, and sequentially obtaining a video hash to be uploaded and a divided video hash to be uploaded 1, a divided video hash to be uploaded 2, a divided video hash to be uploaded 3, … … and a divided video hash to be uploaded I;
and a third step of: the method comprises the steps of sending a segmentation video to be uploaded 1, a segmentation video to be uploaded 2, a segmentation video to be uploaded 3, … …, a segmentation video to be uploaded I, a segmentation video hash to be uploaded 1, a segmentation video hash to be uploaded 2, a segmentation video hash to be uploaded 3, … …, a segmentation video hash to be uploaded I and a video hash to be uploaded in the second step to a cloud server;
Fourth step: the cloud server receives the data in the third step, which are respectively a 1 st received segmented video (1 st received segmented video corresponds to the 1 st segmented video to be uploaded), a 2 nd received segmented video (2 nd received segmented video corresponds to the 2 nd segmented video to be uploaded), a 3 rd received segmented video (3 rd received segmented video corresponds to the 3 rd segmented video to be uploaded), … …, an I-th received segmented video (I-th received segmented video corresponds to the I-th segmented video to be uploaded), a 1 st received segmented video hash (1 st received segmented video hash corresponds to the 1 st segmented video hash to be uploaded), a 2 nd received segmented video hash (2 nd received segmented video hash corresponds to the 2 nd segmented video hash to be uploaded), a 3 rd received segmented video hash (3 rd received segmented video hash corresponds to the 3 rd segmented video hash to be uploaded), … …, an I-th received segmented video hash (I-th received segmented video hash corresponds to the I-th segmented video hash to be uploaded), and a received video hash (video hash to be received hash corresponds to the video hash to be uploaded);
fifth step: respectively carrying out hash operation on the 1 st received divided video, the 2 nd received divided video, the 3 rd received divided video, … … th received divided video and the I-th received divided video to respectively obtain a 1 st received divided video hash, a 2 nd received divided video hash, a 3 rd received divided video hash, a … … th received divided video hash and an I-th received divided video hash in sequence;
Sixth step: judging whether the ith receiving divided video hash is consistent with the ith to-be-uploaded divided video hash or not:
if the ith received segmented video hash is consistent with the ith segmented video hash to be uploaded, I is a positive integer less than or equal to I; executing a seventh step;
namely: if the 1 st received divided video hash is consistent with the 1 st to-be-uploaded divided video hash;
and if the 2 nd received divided video hash is consistent with the 2 nd to-be-uploaded divided video hash;
and if the 3 rd received split video hash is consistent with the 3 rd to-be-uploaded split video hash;
……
and if the I receiving segmentation video hash is consistent with the I to-be-uploaded segmentation video hash;
if the ith receiving segmented video hash is inconsistent with the ith segmented video hash to be uploaded, requesting to re-upload the ith segmented video to be uploaded corresponding to the ith segmented video hash to be uploaded;
namely: if the 1 st received segmented video hash is inconsistent with the 1 st segmented video hash to be uploaded, requesting to re-upload the 1 st segmented video to be uploaded corresponding to the 1 st segmented video hash to be uploaded;
or if the 2 nd received segmented video hash is inconsistent with the 2 nd segmented video hash to be uploaded, requesting to re-upload the i-th segmented video to be uploaded corresponding to the 2 nd segmented video hash to be uploaded;
Or if the 3 rd received segmented video hash is inconsistent with the 3 rd segmented video hash to be uploaded, requesting to re-upload the 3 rd segmented video to be uploaded corresponding to the i rd segmented video hash to be uploaded;
……
or if the I receiving segmented video hash is inconsistent with the I to-be-uploaded segmented video hash, requesting to re-upload the I to-be-uploaded segmented video corresponding to the I to-be-uploaded segmented video hash;
seventh step: sequentially connecting the 1 st received divided video, the 2 nd received divided video, the 3 rd received divided video, … … and the I-th received divided video together to form a connected video; performing hash operation on the connection video to obtain connection video hash, and judging whether the connection video hash is consistent with the received video hash or not:
if the connection video hash is consistent with the received video hash, the connection is correct;
and if the connected video hash is inconsistent with the received video hash, reconnecting. By dividing one video into a plurality of videos, the transmission difficulty is reduced, and the accuracy of the videos is ensured.
In a preferred embodiment of the present invention, in step S2, the method for generating the gate inhibition code by the gate inhibition includes:
the access control obtains the physical address of the PCB wireless transceiver module in the safety helmet to perform hash function operation to obtain an access control code;
Figure SMS_13
o () represents a hash function operation;
z represents the physical address of the PCB wireless transceiver module in the helmet;
z represents a gate inhibition code;
Figure SMS_14
representing an access code update character string;
-representing a string connector;
the physical address z of the PCB wireless transceiver module in the safety helmet is z 1 、z 2 、z 3 One or any combination of the above;
wherein z is 1 Representing the physical address of the PCB Blue Tooth module;
z 2 representing the physical address of the PCB WiFi module;
z 3 representing the physical address of the PCB NFC module;
when the physical address z of the PCB wireless transceiver module in the safety helmet is z 1 、z 2 、z 3 One of them;
when the physical address z of the PCB wireless transceiver module in the safety helmet is z 1 、z 2 、z 3 Second and third; sequentially numbering the two components, wherein the corresponding components are z 1 ′、z 2 ′,z 1 ′、z 2 ′、z 3 ′;z=z 1 ′-z 2 ' or z 1 ′-z 2 ′-z 3 'A'; -representing a string connector;
namely, the physical address z of the PCB wireless transceiver module in the safety helmet is z 1 、z 2 、z 3 Secondly, the second time is that; sequentially numbering the two components, wherein the corresponding components are z 1 ′、z 2 ′;z=z 1 ′-z 2 ′;
Physical address z of PCB wireless transceiver module in safety helmet is z 1 、z 2 、z 3 Thirdly, the third step is to use the device; sequentially numbering the two components, wherein the corresponding components are z 1 ′、z 2 ′、z 3 ′;z=z 1 ′-z 2 ′-z 3 ′。
In a preferred embodiment of the present invention, in step S3, the method for generating and storing the cloud end gate inhibition code in the cloud end server by the cloud end server includes:
Performing hash function operation on the physical address of the PCB wireless transceiver module recorded in the cloud server to obtain Yun Duanmen forbidden codes;
Figure SMS_15
o () represents a hash function operation;
h' represents the physical address of the PCB wireless transceiver module input into the cloud server;
h' represents a cloud end gate forbidden code;
Figure SMS_16
representing an access code update character string;
-representing a string connector;
the physical address h' of the wireless transceiver module of the PCB is recorded as h 1 ″、h 2 ″、h 3 "one or any combination;
wherein h is 1 "the physical address of the PCB Blue Tooth module recorded in the cloud server;
h 2 "the physical address of the PCB WiFi module recorded in the cloud server;
h 3 "represents the physical address of the PCB NFC module entered into the cloud server;
when the physical address h' of the PCB wireless transceiver module input into the cloud server is h 1 ″、h 2 ″、h 3 One of the two;
when the physical address h' of the PCB wireless transceiver module input into the cloud server is h 1 ″、h 2 ″、h 3 Second and third times; sequentially numbering the two parts, wherein the sequence is corresponding to h 1 ″、h 2 ″,h 1 ″、h 2 ″、h 3 ″;h′=h 1 ″-h 2 "or h'=h 1 ″-h 2 ″ -h 3 "C"; -representing a string connector;
namely, the physical address h' of the PCB wireless transceiver module input into the cloud server is h 1 ″、h 2 ″、h 3 Second time; sequentially numbering the two parts, wherein the sequence is corresponding to h 1 ″、h 2 ″;h′=h 1 ″-h 2 ″;
The physical address h' of the PCB wireless transceiver module recorded in the cloud server is h 1 ″、h 2 ″、h 3 Second and third times; sequentially numbering the two parts, wherein the sequence is corresponding to h 1 ″、h 2 ″,h 1 ″、h 2 ″、h 3 ″;h′=h 1 ″-h 2 "or h' =h 1 ″-h 2 ″-h 3 ″;
The cloud server judges whether the access control code stored in the cloud server is consistent with the access control code received by the access control cloud server:
if the door control code stored in the cloud server is consistent with the door control code received by the door control cloud server, the cloud server sends the door control door opening code to the door control, and the door control is opened;
if the access control code stored in the cloud server is inconsistent with the access control code received by the access control cloud server, transmitting the video image of the shot time period to the cloud server.
In a preferred embodiment of the present invention, in step S1, the method of triggering the access controller to wake up the access control wireless transceiver module includes manual triggering or/and automatic triggering.
The manual triggering is that an entering button trigger module installation seat for fixedly installing an entering button trigger module and an exiting button trigger module installation seat for fixedly installing an exiting button trigger module are arranged on the entrance guard, the entering button trigger module is fixedly installed on the entering button trigger module installation seat, the exiting button trigger module is fixedly installed on the exiting button trigger module installation seat, an entering detection data output end of the entering button trigger module is connected with an entering detection data input end of the entrance guard controller, and an exiting detection data output end of the exiting button trigger module is connected with an exiting detection data input end of the entrance guard controller; the access button triggering module is used for detecting whether a construction worker presses the access button or not; the departure button triggering module is used for detecting whether a constructor presses the departure button; when the entering button triggering module or the leaving button triggering module is pressed, namely the entrance guard controller monitors building personnel to enter or leave the building site area, the entrance guard controller wakes up the wireless transceiver module; the access button triggering module comprises an access button, wherein a first end of the access button is connected with a power ground (low level), and a second end of the access button is connected with an access detection data input end of the access controller; the departure button triggering module comprises a departure button, a first end of the departure button is connected with the power ground (low level), and a second end of the departure button is connected with a departure detection data input end of the access controller. The automatic triggering is that a first infrared module installation seat for fixedly installing a first infrared module is arranged on an entrance guard, a first infrared module installation seat for fixedly installing a second infrared module is arranged on the entrance guard, the first infrared module is fixedly installed on the first infrared module installation seat, the second infrared module is fixedly installed on the second infrared module installation seat, an infrared detection signal output end of the first infrared module is connected with an infrared first detection signal input end of an entrance guard controller, an infrared detection signal output end of the second infrared module is connected with an infrared second detection signal input end of the entrance guard controller, and the first infrared module is used for detecting whether a construction worker is to enter a construction site; the second infrared module is used for detecting whether a construction worker is to leave the construction site.
An example is given below:
assuming that the personal identity information of the construction worker written into the helmet of the construction worker (zhangjia) is a name (wangjia), a contact phone (13666666666) and the personal identity information of the construction worker entered into the cloud server is a name (wangjia), a contact phone (13666666666); and the physical address of the PCB WiFi module of the safety helmet (00:0C: 29:5F: 04:53), the physical address of the PCB Blue Tooth module of the safety helmet (14:D0:00:E3:68:C4), and the physical address of the PCB NFC module of the safety helmet (044641A 36E4A800181210556206694025AE2D05C8AC5 AAEF) are input into the cloud server.
The access controller receives an access wireless transceiver module awakening command, and then awakens the access wireless transceiver module, and the access wireless transceiver module is awakened and then communicated with the safety helmet;
the gate inhibition code is calculated by the gate inhibition,
Figure SMS_17
Figure SMS_18
wherein wangjia represents the name of a constructor wearing the safety helmet, which is acquired by the entrance guard and written into the safety helmet;
13666666666 shows a security-cap-wearing construction worker acquired by the entrance guard who writes a contact phone of the construction worker in the security cap;
20201030 the entrance guard code update string;
the gate inhibition code (0808 cee7bd89b5f 9) is sent to the cloud server by the gate inhibition, and after verification of the cloud server is passed, the cloud server sends a gate inhibition code to the gate inhibition, and the gate inhibition is opened; the method for calculating the gate inhibition code by the cloud server comprises the following steps:
Figure SMS_19
Wherein wangjia represents the name of the construction worker entering the cloud server;
13666666666 represents a contact phone of a construction worker entering a cloud server;
20201030 the entrance guard code update string;
because the access control code generated by the cloud server is consistent with the access control code transmitted by the access control, verification is passed, the cloud server transmits the access control door opening code to the access control, and the access control is opened.
Or the access controller receives the access wireless transceiver module awakening command, and awakens the access wireless transceiver module, and the access wireless transceiver module is awakened and communicated with the safety helmet;
the gate inhibition code is calculated by the gate inhibition,
Figure SMS_20
wherein 00:0C:29:5F:04:53 represents the physical address of the PCB WiFi module in the safety helmet;
14:D0:00:E3:68:C4 represent the physical address of a PCB Blue Tooth module in the helmet;
044641A36E4A800181210556206694025AE2D05C8AC5AAEF represents the physical address of the NFC module of the PCB in the helmet;
20201030 the entrance guard code update string;
the gate inhibition code (162103744937 df 39) is sent to the cloud server by the gate inhibition, and after verification is passed by the cloud server, the cloud server sends a gate inhibition code to the gate inhibition, and the gate inhibition is opened; the method for calculating the gate inhibition code by the cloud server comprises the following steps:
Figure SMS_21
/>
Wherein 00:0C:29:5F:04:53 represents the physical address of the PCB WiFi module in the safety helmet of the cloud server;
14:D0:00:E3:68:C4 represents the physical address of a PCB (printed circuit board) Bluetooth module in a safety helmet of the cloud server;
044641A36E4A800181210556206694025AE2D05C8AC5AAEF represents the physical address of the PCB NFC module in the safety helmet entered into the cloud server;
20201030 the entrance guard code update string;
because the access control code generated by the cloud server is consistent with the access control code transmitted by the access control, verification is passed, the cloud server transmits the access control door opening code to the access control, and the access control is opened.
In a preferred embodiment of the invention, the intelligent mobile terminal (intelligent mobile phone) is further included, and when a building worker wants to open the access control to enter a building site, the access control is communicated with a wireless transceiver module on the intelligent mobile terminal through the access control wireless transceiver module; the intelligent handheld mobile terminal generates a gate inhibition code after detecting that the construction worker wears the data information of the safety helmet, then sends the gate inhibition code to the cloud server through the gate inhibition, and opens the gate inhibition after verification is passed; if the intelligent handheld mobile terminal does not detect that the construction worker wears the safety helmet, the intelligent handheld mobile terminal sends out prompt voice.
In a preferred embodiment of the present invention, the method of determining whether a construction worker wears a helmet comprises the steps of:
s21, recording the time t when the intelligent handheld mobile terminal receives personal identity information of construction workers sent by the safety helmet 1 And the time t of sending personal identity information of construction workers by the safety helmet 2
S22,
Figure SMS_22
Wherein c represents the communication propagation speed;
t 1 the moment when the intelligent handheld mobile terminal receives the personal identity information of the construction worker sent by the safety helmet is represented;
t 2 the moment when the safety helmet sends personal identity information of a construction worker is indicated;
t 3 the moment when the safety helmet receives the request of the intelligent handheld mobile terminal to send personal identity information of a construction worker by the safety helmet is indicated;
t 4 the intelligent handheld mobile terminal is used for requesting the safety helmet to send personal identity information of a construction worker;
gamma represents the propagation velocity loss rate, gamma e [0,5% ];
absolute value is calculated by the expression;
s23, if S is S min ,s max ],
Wherein s is min Representing a preset threshold minimum value;
s max representing a preset threshold maximum value;
judging that the worker wears the safety helmet;
s represents the distance between the intelligent handheld mobile terminal and the safety helmet;
if it is
Figure SMS_23
It is determined that the worker is not wearing the helmet.
In a preferred embodiment of the present invention, a method for determining whether a construction worker has always worn a helmet after entering a construction site area, and whether a construction worker has always worn a helmet after entering a construction site area, comprises the steps of:
S31, recording distance measuring time T sent by safety helmet after construction workers enter construction site area i Distance measurement time T when intelligent handheld mobile terminal receives safety helmet transmission i+1
S32,S i =(1-γ)c|T i -T i+1 |,
Wherein, gamma represents the propagation velocity loss rate, gamma epsilon [0,5% ];
c represents the communication propagation speed;
i=2j-1, j represents the jth time; j is a positive integer less than or equal to J, J being the total number of times;
T i indicating the distance measuring moment sent by the safety helmet after the construction worker enters the construction site area;
T i+1 indicating the distance measuring moment when the intelligent handheld mobile terminal receives the safety helmet after the construction worker enters the construction site area;
absolute value is calculated by the expression;
S i representing the distance between the intelligent handheld mobile terminal and the safety helmet during the ith distance measurement;
s33, if S i ∈[s min ,s max ]And ranging set s= { S 1 ,S 2 ,S 3 ,...,S J The elements in the sequence are not completely equal, and the number of the continuously equal elements is smaller than or equal to a preset number threshold value;
wherein s is min Representing a preset threshold minimum value;
s max representation ofPresetting a threshold maximum value;
S 1 the distance between the intelligent handheld mobile terminal and the safety helmet is represented when the distance is measured for the 1 st time;
S 2 representing the distance between the intelligent handheld mobile terminal and the safety helmet when the distance is measured for the 2 nd time;
S 3 representing the distance between the intelligent handheld mobile terminal and the safety helmet when the distance is measured for the 3 rd time;
……
S J Representing the distance between the intelligent handheld mobile terminal and the safety helmet during the J-th distance measurement;
judging that the worker wears the safety helmet;
otherwise, judging that the worker does not wear the safety helmet.
In a preferred embodiment of the invention, when a construction worker wears the helmet, the intelligent handheld mobile terminal acquires whether personal identity information of the construction worker in the helmet is consistent with a local contact phone of the intelligent handheld mobile terminal:
if the intelligent handheld mobile terminal acquires that the personal identity information of the construction worker in the safety helmet is consistent with the local contact telephone of the intelligent handheld mobile terminal, the intelligent handheld mobile terminal does not remind the construction worker;
if the personal identity information of the construction workers in the safety helmet is obtained by the intelligent handheld mobile terminal and is inconsistent with the local contact telephone of the intelligent handheld mobile terminal, the intelligent handheld mobile terminal reminds the construction workers; playing a role in preventing the user from taking the safety helmet by mistake.
Assuming that the personal identity information of the construction worker written into the helmet of the construction worker (zhangjia) is a name (wangjia), a contact phone (13666666666) and the personal identity information of the construction worker entered into the cloud server is a name (wangjia), a contact phone (13666666666); and the physical address of the PCB WiFi module of the safety helmet (00:0C: 29:5F: 04:53), the physical address of the PCB Blue Tooth module of the safety helmet (14:D0:00:E3:68:C4), and the physical address of the PCB NFC module of the safety helmet (044641A 36E4A800181210556206694025AE2D05C8AC5 AAEF) are input into the cloud server.
The access controller receives an access wireless transceiver module awakening command, and awakens the access wireless transceiver module to communicate with the intelligent handheld mobile terminal after awakening;
intelligent handheld mobile terminal communicates with safety helmet, s E s min ,s max ]The construction workers wear the safety helmet;
if the intelligent handheld mobile terminal (intelligent mobile phone) acquires personal identity information of a construction worker in the safety helmet, the personal identity information is consistent with a local contact phone of the intelligent handheld mobile terminal; the intelligent handheld mobile terminal calculates a gate inhibition code,
Figure SMS_24
wherein wangjia represents the name of the construction worker wearing the helmet that he writes into the helmet;
13666666666 the contact phone written to the construction worker in the helmet by the construction worker wearing the helmet;
20201030 the entrance guard code update string;
the intelligent handheld mobile terminal sends a door forbidden code (0808 cee7bd89b5f 9) to the entrance guard, the entrance guard receives the door forbidden code and then sends the door forbidden code to the cloud server, and after the cloud server passes verification, the cloud server sends an entrance guard door opening code to the entrance guard, and the entrance guard is opened; the method for calculating the gate inhibition code by the cloud server comprises the following steps:
Figure SMS_25
wherein wangjia represents the name of the construction worker entering the cloud server;
13666666666 represents a contact phone of a construction worker entering a cloud server;
20201030 the entrance guard code update string;
because the access control code generated by the cloud server is consistent with the access control code transmitted by the access control, verification is passed, the cloud server transmits the access control door opening code to the access control, and the access control is opened.
Or the access controller receives the access wireless transceiver module awakening command, and awakens the access wireless transceiver module to communicate with the intelligent handheld mobile terminal after awakening;
intelligent handheld mobile terminal communicates with safety helmet, s E s min ,s max ]The construction workers wear the safety helmet;
if the intelligent handheld mobile terminal (intelligent mobile phone) acquires personal identity information of a construction worker in the safety helmet, the personal identity information is consistent with a local contact phone of the intelligent handheld mobile terminal; the intelligent handheld mobile terminal calculates a gate inhibition code,
Figure SMS_26
the 00:0C:29:5F:04:53 represents the physical address of the PCB WiFi module in the safety helmet acquired by the intelligent handheld mobile terminal;
14:D0:00:E3:68:C4 represent the physical address of a PCB (printed circuit board) Bluetooth module in the safety helmet acquired by the intelligent handheld mobile terminal;
044641A36E4A800181210556206694025AE2D05C8AC5AAEF represents the physical address of the NFC module of the PCB in the safety helmet obtained by the intelligent handheld mobile terminal;
20201030 the entrance guard code update string;
the intelligent handheld mobile terminal sends a door forbidden code (162103744937 df 39) to the entrance guard, the entrance guard receives the door forbidden code and then sends the door forbidden code to the cloud server, and after the cloud server passes verification, the cloud server sends an entrance guard door opening code to the entrance guard, and the entrance guard is opened; the method for calculating the gate inhibition code by the cloud server comprises the following steps:
Figure SMS_27
/>
wherein 00:0C:29:5F:04:53 represents the physical address of the PCB WiFi module in the safety helmet of the cloud server;
14:D0:00:E3:68:C4 represents the physical address of a PCB (printed circuit board) Bluetooth module in a safety helmet of the cloud server;
044641A36E4A800181210556206694025AE2D05C8AC5AAEF represents the physical address of the PCB NFC module in the safety helmet entered into the cloud server;
20201030 the entrance guard code update string;
because the access control code generated by the cloud server is consistent with the access control code transmitted by the access control, verification is passed, the cloud server transmits the access control door opening code to the access control, and the access control is opened.
In a preferred embodiment of the present invention, in step S3, the method for generating the door opening code by the cloud server includes:
Figure SMS_28
where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
Y represents that the cloud server generates an entrance guard door opening code;
Figure SMS_29
the method comprises the steps of representing an access control door opening code update character string;
-representing a string connector;
the method for calculating the fusion value y of the intelligent handheld mobile terminal comprises the following steps:
if the ID data information of the intelligent handheld mobile terminal input into the cloud server is one or any combination of an IMEI (International Mobile Equipment identity), an ICCID (ICCID) of the intelligent handheld mobile terminal, an MEID (Mobile Equipment identity) of the intelligent handheld mobile terminal, a WiFi (wireless fidelity) physical address of the intelligent handheld mobile terminal, a Blue Tooth physical address of the intelligent handheld mobile terminal and an SEID of the intelligent handheld mobile terminal;
when the ID data information of the intelligent handheld mobile terminal is one of IMEI, ICCID, MEID, wiFi physical address, blue physical address and SEID of the intelligent handheld mobile terminal;
y=y i ′=o(y i ) I=1 or 2 or 3 or 4 or 5 or 6,
y 1 representing the IMEI of the intelligent handheld mobile terminal;
y 2 representing an ICCID of the intelligent handheld mobile terminal;
y 3 representing the MEID of the intelligent handheld mobile terminal;
y 4 representing the WiFi physical address of the intelligent handheld mobile terminal;
y 5 representing the Blue Tooth physical address of the intelligent handheld mobile terminal;
y 6 representing the SEID of the intelligent handheld mobile terminal;
I.e. y=y 1 ′=o(y 1 ),
Wherein y is 1 ' representing an intelligent handheld mobile terminal IMEIy 1 A hash value obtained after the hash function operation;
or y=y 2 ′=o(y 2 ),
Wherein y is 2 ' indicating intelligent hand-held mobile terminal ICCIDy 2 A hash value obtained after the hash function operation;
or y=y 3 ′=o(y 3 ),
Wherein y is 3 ' representing intelligent handheld mobile terminal MEIDy 3 A hash value obtained after the hash function operation;
or y=y 4 ′=o(y 4 ),
Wherein y is 4 ' indicate the WiFi physical address y of the intelligent handheld mobile terminal 4 A hash value obtained after the hash function operation;
or y=y 5 ′=o(y 5 ),
Wherein y is 5 ' represent the Blue Tooth physical address y of the intelligent hand-held mobile terminal 5 A hash value obtained after the hash function operation;
or y=y 6 ′=o(y 6 ),
Wherein y is 6 ' representing intelligent hand-held mobile terminal SEIDy 6 Hashed functionThe hash value obtained after the operation;
when the ID data information of the intelligent handheld mobile terminal is two, three, four, five and six of IMEI, ICCID, MEID, wiFi physical address, blue Tooth physical address and SEID of the intelligent handheld mobile terminal;
the ID data information of the intelligent handheld mobile terminal is the serial numbers of two, three, four, five and six of the IMEI, ICCID, MEID, wiFi physical address, blue physical address and SEID of the intelligent handheld mobile terminal, which are sequentially corresponding to y 1 、y 2 ;y 1 、y 2 、y 3 ;y 1 、y 2 、y 3 、y 4 ;y 1 、y 2 、y 3 、y 4 、 y 5 ;y 1 、y 2 、y 3 、y 4 、y 5 、y 6
Figure SMS_30
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
-representing a string connector;
y 1 ' indicates the number y 1 The corresponding ID data information of the intelligent handheld mobile terminal is subjected to hash function operation to obtain a hash value;
y 2 ' indicates the number y 2 Corresponding ID data information and hash value y of intelligent handheld mobile terminal 1 ' hash value obtained by hash function operation;
y 3 ' indicates the number y 3 Corresponding ID data information and hash value y of intelligent handheld mobile terminal 2 ' hash value obtained by hash function operation;
y 4 ' indicates the number y 4 Corresponding ID data information and hash value y of intelligent handheld mobile terminal 3 ' hash value obtained by hash function operation;
y 5 ' indicates the number y 5 Corresponding ID data information and hash value y of intelligent handheld mobile terminal 4 ' hash value obtained by hash function operation;
y 6 ' indicates the number y 6 Corresponding ID data information and hash value y of intelligent handheld mobile terminal 5 ' hash value obtained by hash function operation;
namely, when the ID data information of the intelligent handheld mobile terminal is two of IMEI, ICCID, MEID, wiFi physical address, blue physical address and SEID of the intelligent handheld mobile terminal;
The ID data information of the intelligent handheld mobile terminal is two sequential numbers of the IMEI of the intelligent handheld mobile terminal, the ICCID of the intelligent handheld mobile terminal, the MEID of the intelligent handheld mobile terminal, the WiFi physical address of the intelligent handheld mobile terminal, the Blue physical address of the intelligent handheld mobile terminal and the SEID of the intelligent handheld mobile terminal, and the two sequential numbers are sequentially and correspondingly y 1 、y 2
Figure SMS_31
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
-representing a string connector;
y 1 ' indicates the number y 1 The corresponding ID data information of the intelligent handheld mobile terminal is subjected to hash function operation to obtain a hash value;
y 2 ' indicates the number y 2 Corresponding ID data information and hash value y of intelligent handheld mobile terminal 1 ' hash value obtained by hash function operation;
for example, when intelligentWhen the ID data information of the handheld mobile terminal is the IMEI of the intelligent handheld mobile terminal and the ICCID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2
Figure SMS_32
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the IMEI of the intelligent handheld mobile terminal;
y 2 representing a number corresponding to the ICCID of the intelligent handheld mobile terminal;
y 1 ' means a hash value obtained by the operation of a hash function of the IMEI of the intelligent handheld mobile terminal;
y 2 ' means the intelligent hand-held mobile terminal ICCID and the hash value y 1 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the IMEI of the intelligent handheld mobile terminal or the MEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2
Figure SMS_33
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the IMEI of the intelligent handheld mobile terminal;
y 2 representing the number corresponding to the MEID of the intelligent handheld mobile terminal;
y 1 ' means a hash value obtained by the operation of a hash function of the IMEI of the intelligent handheld mobile terminal;
y 2 ' means smart handheld mobile terminal MEID and hash value y 1 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is IMEI of the intelligent handheld mobile terminal or WiFi physical address of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2
Figure SMS_34
/>
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the IMEI of the intelligent handheld mobile terminal;
y 2 representing a number corresponding to the WiFi physical address of the intelligent handheld mobile terminal;
y 1 ' means a hash value obtained by the operation of a hash function of the IMEI of the intelligent handheld mobile terminal;
y 2 ' indicate the WiFi physical address and hash value y of the intelligent handheld mobile terminal 1 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the IMEI of the intelligent handheld mobile terminal or the Blue Tooth physical address of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2
Figure SMS_35
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the IMEI of the intelligent handheld mobile terminal;
y 2 number corresponding to Blue Tooth physical address of intelligent handheld mobile terminal;
y 1 ' means a hash value obtained by the operation of a hash function of the IMEI of the intelligent handheld mobile terminal;
y 2 ' represent the Blue Tooth physical address and hash value y of the intelligent hand-held mobile terminal 1 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the IMEI of the intelligent handheld mobile terminal and the SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2
Figure SMS_36
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 Representing a number corresponding to the IMEI of the intelligent handheld mobile terminal;
y 2 representing the number corresponding to the SEID of the intelligent handheld mobile terminal;
y 1 ' means a hash value obtained by the operation of a hash function of the IMEI of the intelligent handheld mobile terminal;
y 2 ' means that the smart handheld mobile terminal SEID and the hash value y 1 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is ICCID of the intelligent handheld mobile terminal or MEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2
Figure SMS_37
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the ICCID of the intelligent handheld mobile terminal;
y 2 representing the number corresponding to the MEID of the intelligent handheld mobile terminal;
y 1 ' represents a hash value obtained by the ICCID of the intelligent handheld mobile terminal through hash function operation;
y 2 ' means smart handheld mobile terminal MEID and hash value y 1 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is ICCID of the intelligent handheld mobile terminal or WiFi physical address of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2
Figure SMS_38
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the ICCID of the intelligent handheld mobile terminal;
y 2 representing a number corresponding to the WiFi physical address of the intelligent handheld mobile terminal;
y 1 ' represents a hash value obtained by the ICCID of the intelligent handheld mobile terminal through hash function operation;
y 2 ' indicate the WiFi physical address and hash value y of the intelligent handheld mobile terminal 1 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is ICCID of the intelligent handheld mobile terminal or Blue Tooth physical address of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2
Figure SMS_39
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the ICCID of the intelligent handheld mobile terminal;
y 2 the number corresponding to the Blue Tooth physical address of the intelligent handheld mobile terminal is represented;
y 1 ' represents a hash value obtained by the ICCID of the intelligent handheld mobile terminal through hash function operation;
y 2 ' represent the Blue Tooth physical address and hash value y of the intelligent hand-held mobile terminal 1 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is ICCID of the intelligent handheld mobile terminal or SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2
Figure SMS_40
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the ICCID of the intelligent handheld mobile terminal;
y 2 representing the number corresponding to the SEID of the intelligent handheld mobile terminal;
y 1 ' represents a hash value obtained by the ICCID of the intelligent handheld mobile terminal through hash function operation;
y 2 ' means that the smart handheld mobile terminal SEID and the hash value y 1 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the MEID of the intelligent handheld mobile terminal, the intelligent handheld mobile terminalWhen the WiFi physical address is ended; sequentially numbering the same and sequentially corresponding to y 1 、y 2
Figure SMS_41
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing the number corresponding to the MEID of the intelligent handheld mobile terminal;
y 2 representing a number corresponding to the WiFi physical address of the intelligent handheld mobile terminal;
y 1 ' means a hash value obtained by hash function operation of the MEID of the intelligent handheld mobile terminal;
y 2 ' indicate the WiFi physical address and hash value y of the intelligent handheld mobile terminal 1 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the MEID of the intelligent handheld mobile terminal and the Blue photon physical address of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2
Figure SMS_42
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing the number corresponding to the MEID of the intelligent handheld mobile terminal;
y 2 the number corresponding to the Blue Tooth physical address of the intelligent handheld mobile terminal is represented;
y 1 ' means a hash value obtained by hash function operation of the MEID of the intelligent handheld mobile terminal;
y 2 ' represent the Blue Tooth physical address and hash value y of the intelligent hand-held mobile terminal 1 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the MEID of the intelligent handheld mobile terminal and the SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2
Figure SMS_43
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing the number corresponding to the MEID of the intelligent handheld mobile terminal;
y 2 representing the number corresponding to the SEID of the intelligent handheld mobile terminal;
y 1 ' means a hash value obtained by hash function operation of the MEID of the intelligent handheld mobile terminal;
y 2 ' means that the smart handheld mobile terminal SEID and the hash value y 1 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the WiFi physical address of the intelligent handheld mobile terminal or the Blue physical address of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2
Figure SMS_44
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the WiFi physical address of the intelligent handheld mobile terminal;
y 2 the number corresponding to the Blue Tooth physical address of the intelligent handheld mobile terminal is represented;
y 1 ' means a hash value obtained by hash function operation of the WiFi physical address of the intelligent handheld mobile terminal;
y 2 ' represent the Blue Tooth physical address and hash value y of the intelligent hand-held mobile terminal 1 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the WiFi physical address of the intelligent handheld mobile terminal and the SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2
Figure SMS_45
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the WiFi physical address of the intelligent handheld mobile terminal;
y 2 representing the number corresponding to the SEID of the intelligent handheld mobile terminal;
y 1 ' means a hash value obtained by hash function operation of the WiFi physical address of the intelligent handheld mobile terminal;
y 2 ' means that the smart handheld mobile terminal SEID and the hash value y 1 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the Blue photon physical address of the intelligent handheld mobile terminal, the SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2
Figure SMS_46
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 the number corresponding to the Blue Tooth physical address of the intelligent handheld mobile terminal is represented;
y 2 representing the number corresponding to the SEID of the intelligent handheld mobile terminal;
y 1 ' represents a hash value obtained by hash function operation of the Blue Tooth physical address of the intelligent handheld mobile terminal;
y 2 ' means that the smart handheld mobile terminal SEID and the hash value y 1 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is three of IMEI, ICCID, MEID, wiFi physical address, blue physical address and SEID of the intelligent handheld mobile terminal;
The three-order serial numbers of the intelligent handheld mobile terminal ID data information including the intelligent handheld mobile terminal IMEI, the intelligent handheld mobile terminal ICCID, the intelligent handheld mobile terminal MEID, the intelligent handheld mobile terminal WiFi physical address, the intelligent handheld mobile terminal Blue Tooth physical address and the intelligent handheld mobile terminal SEID are sequentially corresponding to y 1 、y 2 、y 3
Figure SMS_47
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
-representing a string connector;
y 1 ' indicates the number y 1 The corresponding ID data information of the intelligent handheld mobile terminal is subjected to hash function operation to obtain a hash value;
y 2 ' indicates the number y 2 Corresponding ID data information and hash value y of intelligent handheld mobile terminal 1 ' via hash function operationCalculating the obtained hash value;
y 3 ' indicates the number y 3 Corresponding ID data information and hash value y of intelligent handheld mobile terminal 2 ' hash value obtained by hash function operation;
for example, when the ID data information of the intelligent handheld mobile terminal is an IMEI of the intelligent handheld mobile terminal, an ICCID of the intelligent handheld mobile terminal, or an MEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3
Figure SMS_48
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 Representing a number corresponding to the IMEI of the intelligent handheld mobile terminal;
y 2 representing a number corresponding to the ICCID of the intelligent handheld mobile terminal;
y 3 representing the number corresponding to the MEID of the intelligent handheld mobile terminal;
y 1 ' means a hash value obtained by the operation of a hash function of the IMEI of the intelligent handheld mobile terminal;
y 2 ' means the intelligent hand-held mobile terminal ICCID and the hash value y 1 ' hash value obtained by hash function operation;
y 3 ' means smart handheld mobile terminal MEID and hash value y 2 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the IMEI of the intelligent handheld mobile terminal, the ICCID of the intelligent handheld mobile terminal and the WiFi physical address of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、 y 2 、y 3
Figure SMS_49
/>
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the IMEI of the intelligent handheld mobile terminal;
y 2 representing a number corresponding to the ICCID of the intelligent handheld mobile terminal;
y 3 representing a number corresponding to the ICCID of the intelligent handheld mobile terminal;
y 1 ' means a hash value obtained by the operation of a hash function of the IMEI of the intelligent handheld mobile terminal;
y 2 ' means the intelligent hand-held mobile terminal ICCID and the hash value y 1 ' hash value obtained by hash function operation;
y 3 ' means the intelligent hand-held mobile terminal ICCID and the hash value y 2 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the IMEI of the intelligent handheld mobile terminal, the ICCID of the intelligent handheld mobile terminal and the Blue photon physical address of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3
Figure SMS_50
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the IMEI of the intelligent handheld mobile terminal;
y 2 representing a number corresponding to the ICCID of the intelligent handheld mobile terminal;
y 3 the number corresponding to the Blue Tooth physical address of the intelligent handheld mobile terminal is represented;
y 1 ' representing intelligent handheld movementHash value obtained by hash function operation of terminal IMEI;
y 2 ' means the intelligent hand-held mobile terminal ICCID and the hash value y 1 ' hash value obtained by hash function operation;
y 3 ' represent the Blue Tooth physical address and hash value y of the intelligent hand-held mobile terminal 2 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the IMEI, ICCID and SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3
Figure SMS_51
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the IMEI of the intelligent handheld mobile terminal;
y 2 representing a number corresponding to the ICCID of the intelligent handheld mobile terminal;
y 3 representing the number corresponding to the SEID of the intelligent handheld mobile terminal;
y 1 ' means a hash value obtained by the operation of a hash function of the IMEI of the intelligent handheld mobile terminal;
y 2 ' means the intelligent hand-held mobile terminal ICCID and the hash value y 1 ' hash value obtained by hash function operation;
y 3 ' means that the smart handheld mobile terminal SEID and the hash value y 2 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is ICCID, MEID and WiFi physicalAddress time; sequentially numbering the same and sequentially corresponding to y 1 、 y 2 、y 3
Figure SMS_52
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the ICCID of the intelligent handheld mobile terminal;
y 2 representing the number corresponding to the MEID of the intelligent handheld mobile terminal;
y 3 representing a number corresponding to the WiFi physical address of the intelligent handheld mobile terminal;
y 1 ' represents a hash value obtained by the ICCID of the intelligent handheld mobile terminal through hash function operation;
y 2 ' means smart handheld mobile terminal MEID and hash value y 1 ' hash value obtained by hash function operation;
y 3 ' indicate the WiFi physical address and hash value y of the intelligent handheld mobile terminal 2 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is ICCID, MEID and Blue photon physical address of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3
Figure SMS_53
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the ICCID of the intelligent handheld mobile terminal;
y 2 representation intelligenceThe number corresponding to the MEID of the handheld mobile terminal;
y 3 the number corresponding to the Blue Tooth physical address of the intelligent handheld mobile terminal is represented;
y 1 ' represents a hash value obtained by the ICCID of the intelligent handheld mobile terminal through hash function operation;
y 2 ' means smart handheld mobile terminal MEID and hash value y 1 ' hash value obtained by hash function operation;
y 3 ' represent the Blue Tooth physical address and hash value y of the intelligent hand-held mobile terminal 2 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is ICCID, MEID and SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3
Figure SMS_54
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the ICCID of the intelligent handheld mobile terminal;
y 2 representing the number corresponding to the MEID of the intelligent handheld mobile terminal;
y 3 representing the number corresponding to the SEID of the intelligent handheld mobile terminal;
y 1 ' represents a hash value obtained by the ICCID of the intelligent handheld mobile terminal through hash function operation;
y 2 ' means smart handheld mobile terminal MEID and hash value y 1 ' hash value obtained by hash function operation;
y 3 ' means that the smart handheld mobile terminal SEID and the hash value y 2 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the MEID of the intelligent handheld mobile terminal, the WiFi physical address of the intelligent handheld mobile terminal and the Blue Tooth physical address of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3
Figure SMS_55
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing the number corresponding to the MEID of the intelligent handheld mobile terminal;
y 2 representing a number corresponding to the WiFi physical address of the intelligent handheld mobile terminal;
y 3 the number corresponding to the Blue Tooth physical address of the intelligent handheld mobile terminal is represented;
y 1 ' means a hash value obtained by hash function operation of the MEID of the intelligent handheld mobile terminal;
y 2 ' indicate the WiFi physical address and hash value y of the intelligent handheld mobile terminal 1 ' hash value obtained by hash function operation;
y 3 ' represent the Blue Tooth physical address and hash value y of the intelligent hand-held mobile terminal 2 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the MEID of the intelligent handheld mobile terminal, the WiFi physical address of the intelligent handheld mobile terminal and the SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、 y 2 、y 3
Figure SMS_56
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing the number corresponding to the MEID of the intelligent handheld mobile terminal;
y 2 representing a number corresponding to the WiFi physical address of the intelligent handheld mobile terminal;
y 3 Representing the number corresponding to the SEID of the intelligent handheld mobile terminal;
y 1 ' means a hash value obtained by hash function operation of the MEID of the intelligent handheld mobile terminal;
y 2 ' indicate the WiFi physical address and hash value y of the intelligent handheld mobile terminal 1 ' hash value obtained by hash function operation;
y 3 ' means that the smart handheld mobile terminal SEID and the hash value y 2 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the WiFi physical address of the intelligent handheld mobile terminal, the Blue physical address of the intelligent handheld mobile terminal and the SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3
Figure SMS_57
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the WiFi physical address of the intelligent handheld mobile terminal;
y 2 the number corresponding to the Blue Tooth physical address of the intelligent handheld mobile terminal is represented;
y 3 representing the number corresponding to the SEID of the intelligent handheld mobile terminal;
y 1 ' indicate that WiFi physical address of intelligent handheld mobile terminal is operated by hash functionThe obtained hash value;
y 2 ' represent the Blue Tooth physical address and hash value y of the intelligent hand-held mobile terminal 1 ' hash value obtained by hash function operation;
y 3 ' means that the smart handheld mobile terminal SEID and the hash value y 2 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the IMEI of the intelligent handheld mobile terminal, the MEID of the intelligent handheld mobile terminal or the WiFi physical address of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、 y 2 、y 3
Figure SMS_58
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the IMEI of the intelligent handheld mobile terminal;
y 2 representing the number corresponding to the MEID of the intelligent handheld mobile terminal;
y 3 representing a number corresponding to the WiFi physical address of the intelligent handheld mobile terminal;
y 1 ' means a hash value obtained by the operation of a hash function of the IMEI of the intelligent handheld mobile terminal;
y 2 ' means smart handheld mobile terminal MEID and hash value y 1 ' hash value obtained by hash function operation;
y 3 ' indicate the WiFi physical address and hash value y of the intelligent handheld mobile terminal 2 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the IMEI of the intelligent handheld mobile terminal, the MEID of the intelligent handheld mobile terminal and the Blue Tooth object of the intelligent handheld mobile terminal When the address is managed; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3
Figure SMS_59
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the IMEI of the intelligent handheld mobile terminal;
y 2 representing the number corresponding to the MEID of the intelligent handheld mobile terminal;
y 3 the number corresponding to the Blue Tooth physical address of the intelligent handheld mobile terminal is represented;
y 1 ' means a hash value obtained by the operation of a hash function of the IMEI of the intelligent handheld mobile terminal;
y 2 ' means smart handheld mobile terminal MEID and hash value y 1 ' hash value obtained by hash function operation;
y 3 ' represent the Blue Tooth physical address and hash value y of the intelligent hand-held mobile terminal 2 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the IMEI of the intelligent handheld mobile terminal, the MEID of the intelligent handheld mobile terminal and the SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3
Figure SMS_60
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the IMEI of the intelligent handheld mobile terminal;
y 2 indicating an intelligent hand-holdThe number corresponding to the MEID of the mobile terminal;
y 3 Representing the number corresponding to the SEID of the intelligent handheld mobile terminal;
y 1 ' means a hash value obtained by the operation of a hash function of the IMEI of the intelligent handheld mobile terminal;
y 2 ' means smart handheld mobile terminal MEID and hash value y 1 ' hash value obtained by hash function operation;
y 3 ' means that the smart handheld mobile terminal SEID and the hash value y 2 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the IMEI of the intelligent handheld mobile terminal, the WiFi physical address of the intelligent handheld mobile terminal or the Blue Tooth physical address of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3
Figure SMS_61
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the IMEI of the intelligent handheld mobile terminal;
y 2 representing a number corresponding to the WiFi physical address of the intelligent handheld mobile terminal;
y 3 the number corresponding to the Blue Tooth physical address of the intelligent handheld mobile terminal is represented;
y 1 ' means a hash value obtained by the operation of a hash function of the IMEI of the intelligent handheld mobile terminal;
y 2 ' indicate the WiFi physical address and hash value y of the intelligent handheld mobile terminal 1 ' hash value obtained by hash function operation;
y 3 ' represent the Blue Tooth physical address and hash value y of the intelligent hand-held mobile terminal 2 "Jing sanHash value obtained by operation of the column function;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the IMEI of the intelligent handheld mobile terminal, the WiFi physical address of the intelligent handheld mobile terminal and the SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、 y 2 、y 3
Figure SMS_62
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the IMEI of the intelligent handheld mobile terminal;
y 2 representing a number corresponding to the WiFi physical address of the intelligent handheld mobile terminal;
y 3 representing the number corresponding to the SEID of the intelligent handheld mobile terminal;
y 1 ' means a hash value obtained by the operation of a hash function of the IMEI of the intelligent handheld mobile terminal;
y 2 ' indicate the WiFi physical address and hash value y of the intelligent handheld mobile terminal 1 ' hash value obtained by hash function operation;
y 3 ' means that the smart handheld mobile terminal SEID and the hash value y 2 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the IMEI of the intelligent handheld mobile terminal, the Blue photon physical address of the intelligent handheld mobile terminal and the SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3
Figure SMS_63
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the IMEI of the intelligent handheld mobile terminal;
y 2 the number corresponding to the Blue Tooth physical address of the intelligent handheld mobile terminal is represented;
y 3 representing the number corresponding to the SEID of the intelligent handheld mobile terminal;
y 1 ' means a hash value obtained by the operation of a hash function of the IMEI of the intelligent handheld mobile terminal;
y 2 ' represent the Blue Tooth physical address and hash value y of the intelligent hand-held mobile terminal 1 ' hash value obtained by hash function operation;
y 3 ' means that the smart handheld mobile terminal SEID and the hash value y 2 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is ICCID of the intelligent handheld mobile terminal, blue Tooth physical address of the intelligent handheld mobile terminal and SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3
Figure SMS_64
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the ICCID of the intelligent handheld mobile terminal;
y 2 the number corresponding to the Blue Tooth physical address of the intelligent handheld mobile terminal is represented;
y 3 representing the number corresponding to the SEID of the intelligent handheld mobile terminal;
y 1 ' represents a hash value obtained by the ICCID of the intelligent handheld mobile terminal through hash function operation;
y 2 ' represent the Blue Tooth physical address and hash value y of the intelligent hand-held mobile terminal 1 ' hash value obtained by hash function operation;
y 3 ' means that the smart handheld mobile terminal SEID and the hash value y 2 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is ICCID, wiFi physical address and Blue physical address of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3
Figure SMS_65
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the ICCID of the intelligent handheld mobile terminal;
y 2 representing a number corresponding to the WiFi physical address of the intelligent handheld mobile terminal;
y 3 the number corresponding to the Blue Tooth physical address of the intelligent handheld mobile terminal is represented;
y 1 ' represents a hash value obtained by the ICCID of the intelligent handheld mobile terminal through hash function operation;
y 2 ' indicate the WiFi physical address and hash value y of the intelligent handheld mobile terminal 1 ' hash value obtained by hash function operation;
y 3 ' represent the Blue Tooth physical address and hash value y of the intelligent hand-held mobile terminal 2 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is ICCID of the intelligent handheld mobile terminal and WiFi physical of the intelligent handheld mobile terminalWhen the address and the intelligent handheld mobile terminal SEID are used; numbering the three sequences of the three sequences, wherein the three sequences correspond to y in sequence 1 、 y 2 、y 3
Figure SMS_66
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the ICCID of the intelligent handheld mobile terminal;
y 2 representing a number corresponding to the WiFi physical address of the intelligent handheld mobile terminal;
y 3 representing the number corresponding to the SEID of the intelligent handheld mobile terminal;
y 1 ' represents a hash value obtained by the ICCID of the intelligent handheld mobile terminal through hash function operation;
y 2 ' indicate the WiFi physical address and hash value y of the intelligent handheld mobile terminal 1 ' hash value obtained by hash function operation;
y 3 ' means that the smart handheld mobile terminal SEID and the hash value y 2 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the MEID of the intelligent handheld mobile terminal, the Blue physical address of the intelligent handheld mobile terminal and the SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3
Figure SMS_67
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing the number corresponding to the MEID of the intelligent handheld mobile terminal;
y 2 the number corresponding to the Blue Tooth physical address of the intelligent handheld mobile terminal is represented;
y 3 representing the number corresponding to the SEID of the intelligent handheld mobile terminal;
y 1 ' means a hash value obtained by hash function operation of the MEID of the intelligent handheld mobile terminal;
y 2 ' represent the Blue Tooth physical address and hash value y of the intelligent hand-held mobile terminal 1 ' hash value obtained by hash function operation;
y 3 ' means that the smart handheld mobile terminal SEID and the hash value y 2 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is four times of IMEI, ICCID, MEID, wiFi physical address, blue physical address and SEID of the intelligent handheld mobile terminal;
the data information of the ID of the intelligent handheld mobile terminal is four serial numbers of the IMEI of the intelligent handheld mobile terminal, the ICCID of the intelligent handheld mobile terminal, the MEID of the intelligent handheld mobile terminal, the WiFi physical address of the intelligent handheld mobile terminal, the Blue physical address of the intelligent handheld mobile terminal and the SEID of the intelligent handheld mobile terminal, which are sequentially and correspondingly y 1 、y 2 、y 3 、y 4
Figure SMS_68
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
-representing a string connector;
y 1 ' indicates the number y 1 The corresponding ID data information of the intelligent handheld mobile terminal is subjected to hash function operation to obtain a hash value;
y 2 ' TableNumber y 2 Corresponding ID data information and hash value y of intelligent handheld mobile terminal 1 ' hash value obtained by hash function operation;
y 3 ' indicates the number y 3 Corresponding ID data information and hash value y of intelligent handheld mobile terminal 2 ' hash value obtained by hash function operation;
y 4 ' indicates the number y 4 Corresponding ID data information and hash value y of intelligent handheld mobile terminal 3 ' hash value obtained by hash function operation;
for example, when the ID data information of the intelligent handheld mobile terminal is an IMEI of the intelligent handheld mobile terminal, an ICCID of the intelligent handheld mobile terminal, MEID of the intelligent handheld mobile terminal, or a WiFi physical address of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3 、y 4
Figure SMS_69
/>
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the IMEI of the intelligent handheld mobile terminal;
y 2 representing a number corresponding to the ICCID of the intelligent handheld mobile terminal;
y 3 Representing the number corresponding to the MEID of the intelligent handheld mobile terminal;
y 4 representing a number corresponding to the WiFi physical address of the intelligent handheld mobile terminal;
y 1 ' means a hash value obtained by the operation of a hash function of the IMEI of the intelligent handheld mobile terminal;
y 2 ' means the intelligent hand-held mobile terminal ICCID and the hash value y 1 ' hash value obtained by hash function operation;
y 3 ' means smart handheld mobile terminal MEID and hash value y 2 ' obtained by hash function operationA hash value;
y 4 ' indicate the WiFi physical address and hash value y of the intelligent handheld mobile terminal 3 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the IMEI of the intelligent handheld mobile terminal, the ICCID of the intelligent handheld mobile terminal, the MEID of the intelligent handheld mobile terminal and the Blue Tooth physical address of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3 、y 4
Figure SMS_70
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the IMEI of the intelligent handheld mobile terminal;
y 2 representing a number corresponding to the ICCID of the intelligent handheld mobile terminal;
y 3 representing the number corresponding to the MEID of the intelligent handheld mobile terminal;
y 4 The number corresponding to the Blue Tooth physical address of the intelligent handheld mobile terminal is represented;
y 1 ' means a hash value obtained by the operation of a hash function of the IMEI of the intelligent handheld mobile terminal;
y 2 ' means the intelligent hand-held mobile terminal ICCID and the hash value y 1 ' hash value obtained by hash function operation;
y 3 ' means smart handheld mobile terminal MEID and hash value y 2 ' hash value obtained by hash function operation;
y 4 ' represent the Blue Tooth physical address and hash value y of the intelligent hand-held mobile terminal 3 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the IMEI, ICCID, MEID and SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3 、y 4
Figure SMS_71
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the IMEI of the intelligent handheld mobile terminal;
y 2 representing a number corresponding to the ICCID of the intelligent handheld mobile terminal;
y 3 representing the number corresponding to the MEID of the intelligent handheld mobile terminal;
y 4 representing the number corresponding to the SEID of the intelligent handheld mobile terminal;
y 1 ' means a hash value obtained by the operation of a hash function of the IMEI of the intelligent handheld mobile terminal;
y 2 ' means the intelligent hand-held mobile terminal ICCID and the hash value y 1 ' hash value obtained by hash function operation;
y 3 ' means smart handheld mobile terminal MEID and hash value y 2 ' hash value obtained by hash function operation;
y 4 ' means that the smart handheld mobile terminal SEID and the hash value y 3 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is an IMEI of the intelligent handheld mobile terminal, an ICCID of the intelligent handheld mobile terminal, a WiFi physical address of the intelligent handheld mobile terminal and a Blue Tooth physical address of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3 、y 4
Figure SMS_72
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the IMEI of the intelligent handheld mobile terminal;
y 2 representing a number corresponding to the ICCID of the intelligent handheld mobile terminal;
y 3 representing a number corresponding to the WiFi physical address of the intelligent handheld mobile terminal;
y 4 the number corresponding to the Blue Tooth physical address of the intelligent handheld mobile terminal is represented;
y 1 ' means a hash value obtained by the operation of a hash function of the IMEI of the intelligent handheld mobile terminal;
y 2 ' means the intelligent hand-held mobile terminal ICCID and the hash value y 1 ' hash value obtained by hash function operation;
y 3 ' indicate the WiFi physical address and hash value y of the intelligent handheld mobile terminal 2 ' hash value obtained by hash function operation;
y 4 ' represent the Blue Tooth physical address and hash value y of the intelligent hand-held mobile terminal 3 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the IMEI of the intelligent handheld mobile terminal, the ICCID of the intelligent handheld mobile terminal, the WiFi physical address of the intelligent handheld mobile terminal and the SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3 、y 4
Figure SMS_73
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the IMEI of the intelligent handheld mobile terminal;
y 2 representing a number corresponding to the ICCID of the intelligent handheld mobile terminal;
y 3 representing a number corresponding to the WiFi physical address of the intelligent handheld mobile terminal;
y 4 representing the number corresponding to the SEID of the intelligent handheld mobile terminal;
y 1 ' means a hash value obtained by the operation of a hash function of the IMEI of the intelligent handheld mobile terminal;
y 2 ' means the intelligent hand-held mobile terminal ICCID and the hash value y 1 ' hash value obtained by hash function operation;
y 3 ' indicate the WiFi physical address and hash value y of the intelligent handheld mobile terminal 2 ' hash value obtained by hash function operation;
y 4 ' means that the smart handheld mobile terminal SEID and the hash value y 3 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the IMEI of the intelligent handheld mobile terminal, the ICCID of the intelligent handheld mobile terminal, the Blue photon physical address of the intelligent handheld mobile terminal and the SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3 、y 4
Figure SMS_74
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the IMEI of the intelligent handheld mobile terminal;
y 2 representing a number corresponding to the ICCID of the intelligent handheld mobile terminal;
y 3 the number corresponding to the Blue Tooth physical address of the intelligent handheld mobile terminal is represented;
y 4 representing the number corresponding to the SEID of the intelligent handheld mobile terminal;
y 1 ' means a hash value obtained by the operation of a hash function of the IMEI of the intelligent handheld mobile terminal;
y 2 ' means the intelligent hand-held mobile terminal ICCID and the hash value y 1 ' hash value obtained by hash function operation;
y 3 ' represent the Blue Tooth physical address and hash value y of the intelligent hand-held mobile terminal 2 ' hash value obtained by hash function operation;
y 4 ' means that the smart handheld mobile terminal SEID and the hash value y 3 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the IMEI of the intelligent handheld mobile terminal, the MEID of the intelligent handheld mobile terminal, the WiFi physical address of the intelligent handheld mobile terminal and the Blue Tooth physical address of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3 、y 4
Figure SMS_75
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the IMEI of the intelligent handheld mobile terminal;
y 2 representing the number corresponding to the MEID of the intelligent handheld mobile terminal;
y 3 representing a number corresponding to the WiFi physical address of the intelligent handheld mobile terminal;
y 4 the number corresponding to the Blue Tooth physical address of the intelligent handheld mobile terminal is represented;
y 1 ' means a hash value obtained by the operation of a hash function of the IMEI of the intelligent handheld mobile terminal;
y 2 ' means smart handheld mobile terminal MEID and hash value y 1 ' hash value obtained by hash function operation;
y 3 ' indicate the WiFi physical address and hash value y of the intelligent handheld mobile terminal 2 ' hash value obtained by hash function operation;
y 4 ' represent the Blue Tooth physical address and hash value y of the intelligent hand-held mobile terminal 3 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the IMEI of the intelligent handheld mobile terminal, the MEID of the intelligent handheld mobile terminal, the WiFi physical address of the intelligent handheld mobile terminal and the SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3 、y 4
Figure SMS_76
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the IMEI of the intelligent handheld mobile terminal;
y 2 representing the number corresponding to the MEID of the intelligent handheld mobile terminal;
y 3 representing a number corresponding to the WiFi physical address of the intelligent handheld mobile terminal;
y 4 representing the number corresponding to the SEID of the intelligent handheld mobile terminal;
y 1 ' means a hash value obtained by the operation of a hash function of the IMEI of the intelligent handheld mobile terminal;
y 2 ' means smart handheld mobile terminal MEID and hash value y 1 ' hash value obtained by hash function operation;
y 3 ' indicate the WiFi physical address and hash value y of the intelligent handheld mobile terminal 2 ' hash value obtained by hash function operation;
y 4 ' means that the smart handheld mobile terminal SEID and the hash value y 3 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the IMEI of the intelligent handheld mobile terminal, the MEID of the intelligent handheld mobile terminal, the Blue photon physical address of the intelligent handheld mobile terminal and the SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3 、y 4
Figure SMS_77
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the IMEI of the intelligent handheld mobile terminal;
y 2 representing the number corresponding to the MEID of the intelligent handheld mobile terminal;
y 3 the number corresponding to the Blue Tooth physical address of the intelligent handheld mobile terminal is represented;
y 4 representing the number corresponding to the SEID of the intelligent handheld mobile terminal;
y 1 ' means a hash value obtained by the operation of a hash function of the IMEI of the intelligent handheld mobile terminal;
y 2 ' means smart handheld mobile terminal MEID and hash value y 1 ' hash value obtained by hash function operation;
y 3 ' represent the Blue Tooth physical address and hash value y of the intelligent hand-held mobile terminal 2 ' hash value obtained by hash function operation;
y 4 ' means that the smart handheld mobile terminal SEID and the hash value y 3 "Jing sanHash value obtained by operation of the column function;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is ICCID, MEID, wiFi physical address and Blue Tooth physical address of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3 、y 4
Figure SMS_78
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the ICCID of the intelligent handheld mobile terminal;
y 2 representing the number corresponding to the MEID of the intelligent handheld mobile terminal;
y 3 representing a number corresponding to the WiFi physical address of the intelligent handheld mobile terminal;
y 4 the number corresponding to the Blue Tooth physical address of the intelligent handheld mobile terminal is represented;
y 1 ' represents a hash value obtained by the ICCID of the intelligent handheld mobile terminal through hash function operation;
y 2 ' means smart handheld mobile terminal MEID and hash value y 1 ' hash value obtained by hash function operation;
y 3 ' indicate the WiFi physical address and hash value y of the intelligent handheld mobile terminal 2 ' hash value obtained by hash function operation;
y 4 ' represent the Blue Tooth physical address and hash value y of the intelligent hand-held mobile terminal 3 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is ICCID of the intelligent handheld mobile terminal, the intelligent handheld mobile terminal is provided with the information of the ID data informationThe method comprises the steps that when a terminal MEID, an intelligent handheld mobile terminal WiFi physical address and an intelligent handheld mobile terminal SEID are used; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3 、y 4
Figure SMS_79
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the ICCID of the intelligent handheld mobile terminal;
y 2 representing the number corresponding to the MEID of the intelligent handheld mobile terminal;
y 3 representing a number corresponding to the WiFi physical address of the intelligent handheld mobile terminal;
y 4 representing the number corresponding to the SEID of the intelligent handheld mobile terminal;
y 1 ' represents a hash value obtained by the ICCID of the intelligent handheld mobile terminal through hash function operation;
y 2 ' means smart handheld mobile terminal MEID and hash value y 1 ' hash value obtained by hash function operation;
y 3 ' indicate the WiFi physical address and hash value y of the intelligent handheld mobile terminal 2 ' hash value obtained by hash function operation;
y 4 ' means that the smart handheld mobile terminal SEID and the hash value y 3 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is ICCID, MEID, blue photon physical address and SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3 、y 4
Figure SMS_80
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the ICCID of the intelligent handheld mobile terminal;
y 2 representing the number corresponding to the MEID of the intelligent handheld mobile terminal;
y 3 the number corresponding to the Blue Tooth physical address of the intelligent handheld mobile terminal is represented;
y 4 representing the number corresponding to the SEID of the intelligent handheld mobile terminal;
y 1 ' represents a hash value obtained by the ICCID of the intelligent handheld mobile terminal through hash function operation;
y 2 ' means smart handheld mobile terminal MEID and hash value y 1 ' hash value obtained by hash function operation;
y 3 ' represent the Blue Tooth physical address and hash value y of the intelligent hand-held mobile terminal 2 ' hash value obtained by hash function operation;
y 4 ' means that the smart handheld mobile terminal SEID and the hash value y 3 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is ICCID of the intelligent handheld mobile terminal, wiFi physical address of the intelligent handheld mobile terminal, blue Tooth physical address of the intelligent handheld mobile terminal and SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3 、y 4
Figure SMS_81
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the ICCID of the intelligent handheld mobile terminal;
y 2 representing a number corresponding to the WiFi physical address of the intelligent handheld mobile terminal;
y 3 the number corresponding to the Blue Tooth physical address of the intelligent handheld mobile terminal is represented;
y 4 representing the number corresponding to the SEID of the intelligent handheld mobile terminal;
y 1 ' represents a hash value obtained by the ICCID of the intelligent handheld mobile terminal through hash function operation;
y 2 ' indicate the WiFi physical address and hash value y of the intelligent handheld mobile terminal 1 ' hash value obtained by hash function operation;
y 3 ' represent the Blue Tooth physical address and hash value y of the intelligent hand-held mobile terminal 2 ' hash value obtained by hash function operation;
y 4 ' means that the smart handheld mobile terminal SEID and the hash value y 3 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the MEID of the intelligent handheld mobile terminal, the WiFi physical address of the intelligent handheld mobile terminal, the Blue photon physical address of the intelligent handheld mobile terminal and the SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3 、y 4
Figure SMS_82
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 Representing the number corresponding to the MEID of the intelligent handheld mobile terminal;
y 2 representing a number corresponding to the WiFi physical address of the intelligent handheld mobile terminal;
y 3 the number corresponding to the Blue Tooth physical address of the intelligent handheld mobile terminal is represented;
y 4 representing the number corresponding to the SEID of the intelligent handheld mobile terminal;
y 1 ' means a hash value obtained by hash function operation of the MEID of the intelligent handheld mobile terminal;
y 2 ' indicate the WiFi physical address and hash value y of the intelligent handheld mobile terminal 1 ' hash value obtained by hash function operation;
y 3 ' represent the Blue Tooth physical address and hash value y of the intelligent hand-held mobile terminal 2 ' hash value obtained by hash function operation;
y 4 ' means that the smart handheld mobile terminal SEID and the hash value y 3 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the IMEI of the intelligent handheld mobile terminal, the WiFi physical address of the intelligent handheld mobile terminal, the Blue Tooth physical address of the intelligent handheld mobile terminal and the SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3 、y 4
Figure SMS_83
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the IMEI of the intelligent handheld mobile terminal;
y 2 Representing a number corresponding to the WiFi physical address of the intelligent handheld mobile terminal;
y 3 the number corresponding to the Blue Tooth physical address of the intelligent handheld mobile terminal is represented;
y 4 representing the number corresponding to the SEID of the intelligent handheld mobile terminal;
y 1 ' means a hash value obtained by the operation of a hash function of the IMEI of the intelligent handheld mobile terminal;
y 2 ' indicate the WiFi physical address and hash value y of the intelligent handheld mobile terminal 1 ' hash value obtained by hash function operation;
y 3 ' represent the Blue Tooth physical address and hash value y of the intelligent hand-held mobile terminal 2 ' hash value obtained by hash function operation;
y 4 ' means that the smart handheld mobile terminal SEID and the hash value y 3 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is five of IMEI, ICCID, MEID, wiFi physical address, blue physical address and SEID of the intelligent handheld mobile terminal;
the data information of the ID of the intelligent handheld mobile terminal is five serial numbers of the IMEI of the intelligent handheld mobile terminal, the ICCID of the intelligent handheld mobile terminal, the MEID of the intelligent handheld mobile terminal, the WiFi physical address of the intelligent handheld mobile terminal, the Blue physical address of the intelligent handheld mobile terminal and the SEID of the intelligent handheld mobile terminal, which are sequentially and correspondingly y 1 、y 2 、y 3 、y 4 、y 5
Figure SMS_84
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
-representing a string connector;
y 1 ' indicates the number y 1 The corresponding ID data information of the intelligent handheld mobile terminal is subjected to hash function operation to obtain a hash value;
y 2 ' indicates the number y 2 Corresponding intelligent handheld mobile deviceTerminal ID data information and hash value y 1 ' hash value obtained by hash function operation;
y 3 ' indicates the number y 3 Corresponding ID data information and hash value y of intelligent handheld mobile terminal 2 ' hash value obtained by hash function operation;
y 4 ' indicates the number y 4 Corresponding ID data information and hash value y of intelligent handheld mobile terminal 3 ' hash value obtained by hash function operation;
y 5 ' indicates the number y 5 Corresponding ID data information and hash value y of intelligent handheld mobile terminal 4 ' hash value obtained by hash function operation;
for example, when the ID data information of the intelligent handheld mobile terminal is an IMEI of the intelligent handheld mobile terminal, an ICCID of the intelligent handheld mobile terminal, an MEID of the intelligent handheld mobile terminal, a WiFi physical address of the intelligent handheld mobile terminal, or a Blue physical address of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3 、y 4 、 y 5
Figure SMS_85
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the IMEI of the intelligent handheld mobile terminal;
y 2 representing a number corresponding to the ICCID of the intelligent handheld mobile terminal;
y 3 representing the number corresponding to the MEID of the intelligent handheld mobile terminal;
y 4 representing a number corresponding to the WiFi physical address of the intelligent handheld mobile terminal;
y 5 the number corresponding to the Blue Tooth physical address of the intelligent handheld mobile terminal is represented;
y 1 ' means that the IMEI of the intelligent handheld mobile terminal is hashedHash value obtained by function operation;
y 2 ' means the intelligent hand-held mobile terminal ICCID and the hash value y 1 ' hash value obtained by hash function operation;
y 3 ' means smart handheld mobile terminal MEID and hash value y 2 ' hash value obtained by hash function operation;
y 4 ' indicate the WiFi physical address and hash value y of the intelligent handheld mobile terminal 3 ' hash value obtained by hash function operation;
y 5 ' represent the Blue Tooth physical address and hash value y of the intelligent hand-held mobile terminal 4 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the IMEI of the intelligent handheld mobile terminal, the ICCID of the intelligent handheld mobile terminal, the MEID of the intelligent handheld mobile terminal, the WiFi physical address of the intelligent handheld mobile terminal and the SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3 、y 4 、y 5
Figure SMS_86
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the IMEI of the intelligent handheld mobile terminal;
y 2 representing a number corresponding to the ICCID of the intelligent handheld mobile terminal;
y 3 representing the number corresponding to the MEID of the intelligent handheld mobile terminal;
y 4 representing the number corresponding to the SEID of the intelligent handheld mobile terminal;
y 5 the number corresponding to the Blue Tooth physical address of the intelligent handheld mobile terminal is represented;
y 1 ' TableIndicating a hash value obtained by the IMEI of the intelligent handheld mobile terminal through hash function operation;
y 2 ' means the intelligent hand-held mobile terminal ICCID and the hash value y 1 ' hash value obtained by hash function operation;
y 3 ' means smart handheld mobile terminal MEID and hash value y 2 ' hash value obtained by hash function operation;
y 4 ' means that the smart handheld mobile terminal SEID and the hash value y 3 ' hash value obtained by hash function operation;
y 5 ' represent the Blue Tooth physical address and hash value y of the intelligent hand-held mobile terminal 4 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the IMEI of the intelligent handheld mobile terminal, the MEID of the intelligent handheld mobile terminal, the WiFi physical address of the intelligent handheld mobile terminal, the Blue Tooth physical address of the intelligent handheld mobile terminal and the SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3 、y 4 、 y 5
Figure SMS_87
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the IMEI of the intelligent handheld mobile terminal;
y 2 representing the number corresponding to the MEID of the intelligent handheld mobile terminal;
y 3 representing a number corresponding to the WiFi physical address of the intelligent handheld mobile terminal;
y 4 the number corresponding to the Blue Tooth physical address of the intelligent handheld mobile terminal is represented;
y 5 number corresponding to SEID of intelligent handheld mobile terminal;
y 1 ' means a hash value obtained by the operation of a hash function of the IMEI of the intelligent handheld mobile terminal;
y 2 ' means smart handheld mobile terminal MEID and hash value y 1 ' hash value obtained by hash function operation;
y 3 ' indicate the WiFi physical address and hash value y of the intelligent handheld mobile terminal 2 ' hash value obtained by hash function operation;
y 4 ' represent the Blue Tooth physical address and hash value y of the intelligent hand-held mobile terminal 3 ' hash value obtained by hash function operation;
y 5 ' means that the smart handheld mobile terminal SEID and the hash value y 4 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the IMEI of the intelligent handheld mobile terminal, the ICCID of the intelligent handheld mobile terminal, the WiFi physical address of the intelligent handheld mobile terminal, the Blue Tooth physical address of the intelligent handheld mobile terminal and the SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3 、y 4 、 y 5
Figure SMS_88
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the IMEI of the intelligent handheld mobile terminal;
y 2 representing a number corresponding to the ICCID of the intelligent handheld mobile terminal;
y 3 representing a number corresponding to the WiFi physical address of the intelligent handheld mobile terminal;
y 4 the number corresponding to the Blue Tooth physical address of the intelligent handheld mobile terminal is represented;
y 5 representing the number corresponding to the SEID of the intelligent handheld mobile terminal;
y 1 ' means a hash value obtained by the operation of a hash function of the IMEI of the intelligent handheld mobile terminal;
y 2 ' means the intelligent hand-held mobile terminal ICCID and the hash value y 1 ' hash value obtained by hash function operation;
y 3 ' indicate the WiFi physical address and hash value y of the intelligent handheld mobile terminal 2 ' hash value obtained by hash function operation;
y 4 ' represent the Blue Tooth physical address and hash value y of the intelligent hand-held mobile terminal 3 ' hash value obtained by hash function operation;
y 5 ' means that the smart handheld mobile terminal SEID and the hash value y 4 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is the IMEI of the intelligent handheld mobile terminal, the ICCID of the intelligent handheld mobile terminal, the MEID of the intelligent handheld mobile terminal, the Blue Tooth physical address of the intelligent handheld mobile terminal and the SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3 、y 4 、y 5
Figure SMS_89
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the IMEI of the intelligent handheld mobile terminal;
y 2 representing a number corresponding to the ICCID of the intelligent handheld mobile terminal;
y 3 representing the number corresponding to the MEID of the intelligent handheld mobile terminal;
y 4 representing Blue Tooth physical address of intelligent handheld mobile terminalCorresponding numbers;
y 5 representing the number corresponding to the SEID of the intelligent handheld mobile terminal;
y 1 ' means a hash value obtained by the operation of a hash function of the IMEI of the intelligent handheld mobile terminal;
y 2 ' means the intelligent hand-held mobile terminal ICCID and the hash value y 1 ' hash value obtained by hash function operation;
y 3 ' means smart handheld mobile terminal MEID and hash value y 2 ' hash value obtained by hash function operation;
y 4 ' represent the Blue Tooth physical address and hash value y of the intelligent hand-held mobile terminal 3 ' hash value obtained by hash function operation;
y 5 ' means that the smart handheld mobile terminal SEID and the hash value y 4 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is ICCID, MEID, wiFi physical address, blue Tooth physical address and SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3 、y 4 、 y 5
Figure SMS_90
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the ICCID of the intelligent handheld mobile terminal;
y 2 representing the number corresponding to the MEID of the intelligent handheld mobile terminal;
y 3 representing a number corresponding to the WiFi physical address of the intelligent handheld mobile terminal;
y 4 the number corresponding to the Blue Tooth physical address of the intelligent handheld mobile terminal is represented;
y 5 representing the number corresponding to the SEID of the intelligent handheld mobile terminal;
y 1 ' represents a hash value obtained by the ICCID of the intelligent handheld mobile terminal through hash function operation;
y 2 ' means smart handheld mobile terminal MEID and hash value y 1 ' hash value obtained by hash function operation;
y 3 ' indicate the WiFi physical address and hash value y of the intelligent handheld mobile terminal 2 ' hash value obtained by hash function operation;
y 4 ' represent the Blue Tooth physical address and hash value y of the intelligent hand-held mobile terminal 3 ' hash value obtained by hash function operation;
y 5 ' means that the smart handheld mobile terminal SEID and the hash value y 4 ' hash value obtained by hash function operation;
-representing a string connector.
Or when the ID data information of the intelligent handheld mobile terminal is six of IMEI, ICCID, MEID, wiFi physical address, blue physical address and SEID of the intelligent handheld mobile terminal;
The method comprises the steps of sequentially numbering six-sequence numbers of IMEI (International Mobile Equipment identity), ICCID (integrated circuit card) of the intelligent handheld mobile terminal, MEID (media information identity), wiFi (wireless fidelity) physical address of the intelligent handheld mobile terminal, blue Tooth physical address of the intelligent handheld mobile terminal and SEID of the intelligent handheld mobile terminal in sequence, wherein y is the number of the six-sequence numbers 1 、y 2 、y 3 、y 4 、y 5 、y 6
Figure SMS_91
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
-representing a string connector;
y 1 ' indicates the number y 1 The corresponding ID data information of the intelligent handheld mobile terminal is subjected to hash function operation to obtain a hash value;
y 2 ' indicates the number y 2 Corresponding ID data information and hash value y of intelligent handheld mobile terminal 1 ' hash value obtained by hash function operation;
y 3 ' indicates the number y 3 Corresponding ID data information and hash value y of intelligent handheld mobile terminal 2 ' hash value obtained by hash function operation;
y 4 ' indicates the number y 4 Corresponding ID data information and hash value y of intelligent handheld mobile terminal 3 ' hash value obtained by hash function operation;
y 5 ' indicates the number y 5 Corresponding ID data information and hash value y of intelligent handheld mobile terminal 4 ' hash value obtained by hash function operation;
y 6 ' indicates the number y 6 Corresponding ID data information and hash value y of intelligent handheld mobile terminal 5 ' hash value obtained by hash function operation;
namely, when the ID data information of the intelligent handheld mobile terminal is the IMEI of the intelligent handheld mobile terminal, the ICCID of the intelligent handheld mobile terminal, the MEID of the intelligent handheld mobile terminal, the WiFi physical address of the intelligent handheld mobile terminal, the Blue physical address of the intelligent handheld mobile terminal and the SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to y 1 、y 2 、y 3 、y 4 、y 5 、y 6
Figure SMS_92
Where o () represents a hash function operation;
y represents a fusion value of the intelligent handheld mobile terminal;
y 1 representing a number corresponding to the IMEI of the intelligent handheld mobile terminal;
y 2 representing a number corresponding to the ICCID of the intelligent handheld mobile terminal;
y 3 representing the number corresponding to the MEID of the intelligent handheld mobile terminal;
y 4 representing a number corresponding to the WiFi physical address of the intelligent handheld mobile terminal;
y 5 the number corresponding to the Blue Tooth physical address of the intelligent handheld mobile terminal is represented;
y 6 representing the number corresponding to the SEID of the intelligent handheld mobile terminal;
y 1 ' means a hash value obtained by the operation of a hash function of the IMEI of the intelligent handheld mobile terminal;
y 2 ' means the intelligent hand-held mobile terminal ICCID and the hash value y 1 ' hash value obtained by hash function operation;
y 3 ' means smart handheld mobile terminal MEID and hash value y 2 ' hash value obtained by hash function operation;
y 4 ' indicate the WiFi physical address and hash value y of the intelligent handheld mobile terminal 3 ' hash value obtained by hash function operation;
y 5 ' represent the Blue Tooth physical address and hash value y of the intelligent hand-held mobile terminal 4 ' hash value obtained by hash function operation;
y 6 ' means that the smart handheld mobile terminal SEID and the hash value y 5 ' hash value obtained by hash function operation;
-representing a string connector.
In a preferred embodiment of the present invention, in step S3, the method further includes comparing, by the access controller, whether the access opening code received by the access control and sent by the cloud server is consistent with the access control generating access opening code:
if the door access code transmitted by the cloud server is received by the door access, the door access code is consistent with the door access generated by the door access, and the door access is opened;
if the door access code sent by the cloud server is inconsistent with the door access code generated by the door access, the door access is not opened, and the video image of the shot time period is transmitted to the cloud server;
the method for generating the door opening code of the door control comprises the following steps:
Figure SMS_93
where o () represents a hash function operation;
z represents a fusion value of the intelligent handheld mobile terminal generated by the access control;
Z represents that the entrance guard generates an entrance guard door opening code;
Figure SMS_94
the method comprises the steps of representing an access control door opening code update character string;
-representing a string connector;
the method for calculating the fusion value y of the intelligent handheld mobile terminal generated by the access control comprises the following steps:
if the intelligent handheld mobile terminal ID data information acquired by the access control is one or any combination of an intelligent handheld mobile terminal IMEI, an intelligent handheld mobile terminal ICCID, an intelligent handheld mobile terminal MEID, an intelligent handheld mobile terminal WiFi physical address, an intelligent handheld mobile terminal Blue Tooth physical address and an intelligent handheld mobile terminal SEID;
when the ID data information of the intelligent handheld mobile terminal is one of IMEI, ICCID, MEID, wiFi physical address, blue physical address and SEID of the intelligent handheld mobile terminal;
z=z i ′=o(z i ) I=1 or 2 or 3 or 4 or 5 or 6,
z 1 representing the IMEI of the intelligent handheld mobile terminal;
z 2 representing an ICCID of the intelligent handheld mobile terminal;
z 3 representing intelligenceThe mobile terminal MEID can be held by hand;
z 4 representing the WiFi physical address of the intelligent handheld mobile terminal;
z 5 representing the Blue Tooth physical address of the intelligent handheld mobile terminal;
z 6 representing the SEID of the intelligent handheld mobile terminal;
I.e. z=z 1 ′=o(z 1 ),
Wherein z is 1 ' indicating intelligent hand-held mobile terminal IMEIz 1 A hash value obtained after the hash function operation;
or z=z 2 ′=o(z 2 ),
Wherein y is 2 ' indicating intelligent hand-held mobile terminal ICCIDy 2 A hash value obtained after the hash function operation;
or y=y 3 ′=o(y 3 ),
Wherein z is 3 ' representing an intelligent handheld mobile terminal MEIDz 3 A hash value obtained after the hash function operation;
or z=z 4 ′=o(z 4 ),
Wherein z is 4 ' indicate the WiFi physical address z of the intelligent handheld mobile terminal 4 A hash value obtained after the hash function operation;
or z=z 5 ′=o(z 5 ),
Wherein z is 5 ' represent the Blue Tooth physical address z of an intelligent handheld mobile terminal 5 A hash value obtained after the hash function operation;
or z=z 6 ′=o(z 6 ),
Wherein z is 6 ' represent intelligent hand-held mobile terminal SEIDz 6 A hash value obtained after the hash function operation;
when the ID data information of the intelligent handheld mobile terminal is two, three, four, five and six of IMEI, ICCID, MEID, wiFi physical address, blue Tooth physical address and SEID of the intelligent handheld mobile terminal;
the ID data information of the intelligent handheld mobile terminal is the serial numbers of two, three, four, five and six of the IMEI, ICCID, MEID, wiFi physical address, blue Tooth physical address and SEID of the intelligent handheld mobile terminal, which are sequentially corresponding to z 1 、z 2 ;z 1 、z 2 、z 3 ;z 1 、z 2 、z 3 、z 4 ;z 1 、z 2 、z 3 、z 4 、 z 5 ;z 1 、z 2 、z 3 、z 4 、z 5 、z 6
Figure SMS_95
Where o () represents a hash function operation;
z represents a fusion value of the intelligent handheld mobile terminal generated by the access control;
-representing a string connector;
z 1 ' indicating number z 1 The corresponding ID data information of the intelligent handheld mobile terminal is subjected to hash function operation to obtain a hash value;
z 2 ' indicating number z 2 Corresponding ID data information and hash value z of intelligent handheld mobile terminal 1 ' hash value obtained by hash function operation;
z 3 ' indicating number z 3 Corresponding ID data information and hash value z of intelligent handheld mobile terminal 2 ' hash value obtained by hash function operation;
z 4 ' indicating number z 4 Corresponding ID data information and hash value z of intelligent handheld mobile terminal 3 ' hash value obtained by hash function operation;
z 5 ' indicating number z 5 Corresponding intelligent handheld mobile terminal ID data information and corresponding intelligent handheld mobile terminal ID data informationColumn value z 4 ' hash value obtained by hash function operation;
z 6 ' indicating number z 6 Corresponding ID data information and hash value z of intelligent handheld mobile terminal 5 ' hash value obtained by hash function operation;
namely, when the ID data information of the intelligent handheld mobile terminal is two of IMEI, ICCID, MEID, wiFi physical address, blue physical address and SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to z 1 、z 2
Figure SMS_96
Where o () represents a hash function operation;
z represents a fusion value of the intelligent handheld mobile terminal generated by the access control;
-representing a string connector;
z 1 ' indicating number z 1 The corresponding ID data information of the intelligent handheld mobile terminal is subjected to hash function operation to obtain a hash value;
z 2 ' indicating number z 2 Corresponding ID data information and hash value z of intelligent handheld mobile terminal 1 ' hash value obtained by hash function operation;
or when the ID data information of the intelligent handheld mobile terminal is three of IMEI, ICCID, MEID, wiFi physical address, blue physical address and SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to z 1 、z 2 、z 3
Figure SMS_97
Where o () represents a hash function operation;
z represents a fusion value of the intelligent handheld mobile terminal generated by the access control;
-representing a string connector;
z 1 ' indicating number z 1 The corresponding ID data information of the intelligent handheld mobile terminal is subjected to hash function operation to obtain a hash value;
z 2 ' indicating number z 2 Corresponding ID data information and hash value z of intelligent handheld mobile terminal 1 ' hash value obtained by hash function operation;
z 3 ' indicating number z 3 Corresponding ID data information and hash value z of intelligent handheld mobile terminal 2 ' hash value obtained by hash function operation;
or when the ID data information of the intelligent handheld mobile terminal is four times of IMEI, ICCID, MEID, wiFi physical address, blue physical address and SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to z 1 、z 2 、z 3 、z 4
Figure SMS_98
Where o () represents a hash function operation;
z represents a fusion value of the intelligent handheld mobile terminal generated by the access control;
-representing a string connector;
z 1 ' indicating number z 1 The corresponding ID data information of the intelligent handheld mobile terminal is subjected to hash function operation to obtain a hash value;
z 2 ' indicating number z 2 Corresponding ID data information and hash value z of intelligent handheld mobile terminal 1 ' hash value obtained by hash function operation;
z 3 ' indicating number z 3 Corresponding ID data information of intelligent handheld mobile terminalAnd hash value z 2 ' hash value obtained by hash function operation;
z 4 ' indicating number z 4 Corresponding ID data information and hash value z of intelligent handheld mobile terminal 3 ' hash value obtained by hash function operation;
Or when the ID data information of the intelligent handheld mobile terminal is five of IMEI, ICCID, MEID, wiFi physical address, blue physical address and SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to z 1 、z 2 、z 3 、z 4 、z 5
Figure SMS_99
Where o () represents a hash function operation;
z represents a fusion value of the intelligent handheld mobile terminal generated by the access control;
-representing a string connector;
z 1 ' indicating number z 1 The corresponding ID data information of the intelligent handheld mobile terminal is subjected to hash function operation to obtain a hash value;
z 2 ' indicating number z 2 Corresponding ID data information and hash value z of intelligent handheld mobile terminal 1 ' hash value obtained by hash function operation;
z 3 ' indicating number z 3 Corresponding ID data information and hash value z of intelligent handheld mobile terminal 2 ' hash value obtained by hash function operation;
z 4 ' indicating number z 4 Corresponding ID data information and hash value z of intelligent handheld mobile terminal 3 ' hash value obtained by hash function operation;
z 5 ' indicating number z 5 Corresponding ID data information and hash value z of intelligent handheld mobile terminal 4 ' obtained by hash function operation A hash value;
or when the ID data information of the intelligent handheld mobile terminal is six of IMEI, ICCID, MEID, wiFi physical address, blue physical address and SEID of the intelligent handheld mobile terminal; sequentially numbering the same and sequentially corresponding to z 1 、z 2 、z 3 、z 4 、z 5 、z 6
Figure SMS_100
Where o () represents a hash function operation;
z represents a fusion value of the intelligent handheld mobile terminal generated by the access control;
-representing a string connector;
z 1 ' indicating number z 1 The corresponding ID data information of the intelligent handheld mobile terminal is subjected to hash function operation to obtain a hash value;
z 2 ' indicating number z 2 Corresponding ID data information and hash value z of intelligent handheld mobile terminal 1 ' hash value obtained by hash function operation;
z 3 ' indicating number z 3 Corresponding ID data information and hash value z of intelligent handheld mobile terminal 2 ' hash value obtained by hash function operation;
z 4 ' indicating number z 4 Corresponding ID data information and hash value z of intelligent handheld mobile terminal 3 ' hash value obtained by hash function operation;
z 5 ' indicating number z 5 Corresponding ID data information and hash value z of intelligent handheld mobile terminal 4 ' hash value obtained by hash function operation;
z 6 ' indicating number z 6 Corresponding ID data information and hash value z of intelligent handheld mobile terminal 5 'hash value obtained by hash function operation'. Although shown and describedHaving described embodiments of the present invention, it will be appreciated by those of ordinary skill in the art that: many changes, modifications, substitutions and variations may be made to the embodiments without departing from the spirit and principles of the invention, the scope of which is defined by the claims and their equivalents.

Claims (8)

1. The construction site behavior personnel optimizing system based on the intelligent cloud platform comprises a safety helmet which is worn on the head and is used for protecting the head from being damaged, and is characterized in that a PCB mounting seat for fixedly mounting a PCB is arranged in the safety helmet, and the PCB is fixedly mounted on the PCB mounting seat; a PCB controller and a PCB wireless transceiver module connected with the PCB controller are arranged on the PCB;
the PCB controller stores personal identity information of construction workers, wherein the personal identity information of construction workers comprises one or any combination of names, contact phones and dormitory addresses; the contact telephone comprises a contact telephone of the constructor or and/or an emergency contact telephone of an emergency contact added by the constructor, and the emergency contact corresponding to the emergency contact telephone;
The system also comprises a cloud server and an access control device for a construction worker to enter and exit the construction site;
the entrance guard is provided with an entrance guard PCB mounting seat for fixedly mounting an entrance guard PCB, the entrance guard PCB is fixedly mounted on the entrance guard PCB mounting seat, the entrance guard PCB is provided with an entrance guard wireless transceiver module, and a data transceiver end of the entrance guard wireless transceiver module is connected with a data transceiver end of an entrance guard controller;
when a building worker waits to open the access control and enters a building site, the access control is communicated with a wireless transceiver module on the safety helmet through the access control wireless transceiver module; the access control sends the generated access control code to a cloud server, and after verification is passed, the access control is opened; the optimization method of the construction site behavioral personnel optimization system based on the intelligent cloud platform comprises the following steps:
s1, whether an access controller receives an access wireless transceiver module awakening command:
if the access controller receives the access wireless transceiver module awakening command, the access controller awakens the access wireless transceiver module;
if the access controller does not receive the wake-up command of the access wireless transceiver module, returning to the step S1;
s2, the access control is communicated with the safety helmet, and whether a construction worker wears the safety helmet is judged:
If the construction worker does not wear the safety helmet, the entrance guard sends out prompt voice;
if the building worker wears the safety helmet, the entrance guard sends the generated entrance guard code to the cloud server;
s3, after receiving the door forbidden code, the cloud server verifies, and after verification is passed, the cloud server sends an access control door opening code to the access control, and the access control is opened;
further, the method for generating the gate inhibition code by the gate inhibition comprises the following steps:
the entrance guard obtains personal identity information of construction workers stored in the safety helmet and carries out hash function operation to obtain an entrance guard code;
Figure FDA0004142554260000021
o () represents a hash function operation;
x represents personal identity information of construction workers;
x represents a forbidden gate code;
Figure FDA0004142554260000022
representing an access code update character string;
-representing a string connector;
the personal identity information x of the construction workers is x 1 、x 2 、x 3 、x 4 、x 5 One or any combination of the above;
wherein x is 1 A name representing a construction worker;
x 2 a contact phone representing a construction worker;
x 3 dormitory residence representing construction workersAn address;
x 4 a name representing the emergency contact;
x 5 an emergency contact telephone representing an emergency contact;
when the personal identity information x of the construction workers is x 1 、x 2 、x 3 、x 4 、x 5 One of them; x=x 1 Or x=x 2 Or x=x 3 Or x=x 4 Or x=x 5
When the personal identity information x of the construction workers is x 1 、x 2 、x 3 、x 4 、x 5 Two, three, four, five hours; sequentially numbering the two components, wherein the sequence corresponds to x 1 ′、x 2 ′,x 1 ′、x 2 ′、x 3 ′,x 1 ′、x 2 ′、x 3 ′、x 4 ′,x 1 ′、x 2 ′、x 3 ′、x 4 ′、x 5 ′;x=x 1 ′-x 2 ' or x 1 ′-x 2 ′-x 3 ' or x 1 ′-x 2 ′-x 3 ′-x 4 ' or x 1 ′-x 2 ′-x 3 ′-x 4 ′-x 5 'A'; -representing a string connector;
i.e. the personal identity information x of the construction workers is x 1 、x 2 、x 3 、x 4 、x 5 Secondly, the second time is that; sequentially numbering the two components, wherein the sequence corresponds to x 1 ′、x 2 ′;x=x 1 ′-x 2 ′;
The personal identity information x of the construction worker is x 1 、x 2 、x 3 、x 4 、x 5 Thirdly, the third step is to use the device; sequentially numbering the two components, wherein the sequence corresponds to x 1 ′、x 2 ′、x 3 ′;x=x 1 ′-x 2 ′-x 3 ′;
The personal identity information x of the construction worker is x 1 、x 2 、x 3 、x 4 、x 5 Four hours; sequentially numbering the two components, wherein the sequence corresponds to x 1 ′、x 2 ′、x 3 ′、x 4 ′;x=x 1 ′-x 2 ′-x 3 ′-x 4 ′;
The personal identity information x of the construction worker is x 1 、x 2 、x 3 、x 4 、x 5 Fifthly, performing operation; sequentially numbering the two components, wherein the sequence corresponds to x 1 ′、x 2 ′、x 3 ′、x 4 ′、x 5 ′;x=x 1 ′-x 2 ′-x 3 ′-x 4 ′-x 5 ′。
2. The intelligent cloud platform-based building site personnel optimization system according to claim 1, wherein the access control wireless transceiver module comprises one or any combination of an access control Blue Tooth module, an access control WiFi module and an access control NFC module;
when the access control wireless transceiver module is an access control Blue Tooth module, the wireless data transceiver end of the access control Blue Tooth module is connected with the Blue Tooth wireless transceiver data end of the access control controller; the entrance guard communicates with the safety helmet through Blue photon;
when the access control wireless transceiver module is an access control WiFi module, the wireless data transceiver end of the access control WiFi module is connected with the WiFi wireless transceiver data end of the access control controller; the entrance guard communicates with the safety helmet through WiFi;
When the access control wireless transceiver module is an access control NFC module, the wireless data transceiver end of the access control NFC module is connected with the NFC wireless data transceiver end of the access control controller; the entrance guard communicates with the safety helmet through NFC.
3. The intelligent cloud platform-based worksite behavioural optimization system as claimed in claim 1, wherein the PCB board wireless transceiver module comprises one or any combination of a PCB board Blue Tooth module, a PCB board WiFi module, and a PCB board NFC module;
when the PCB wireless receiving and transmitting module is a PCB Blue Tooth module, the wireless data receiving and transmitting end of the PCB Blue Tooth module is connected with the Blue Tooth wireless receiving and transmitting data end of the PCB controller; the PCB communicates with the entrance guard through Blue Tooth;
when the PCB wireless receiving and transmitting module is a PCB WiFi module, the wireless data receiving and transmitting end of the PCB WiFi module is connected with the WiFi wireless receiving and transmitting data end of the PCB controller; the PCB communicates with the access control through WiFi;
when the PCB wireless receiving and transmitting module is a PCB NFC module, the wireless data receiving and transmitting end of the PCB NFC module is connected with the NFC wireless receiving and transmitting data end of the PCB controller; the PCB communicates with the access control through NFC.
4. The intelligent cloud platform-based worksite behavioural optimization system as claimed in claim 2 or 3, wherein the PCB board wireless transceiver module is a PCB board Blue Tooth module;
The entrance guard wireless transceiver module is an entrance guard Blue Tooth module;
when the building worker waits to open the entrance guard and gets into the building site, the entrance guard communicates with the Blue Tooth module on the safety helmet through entrance guard Blue Tooth module.
5. The intelligent cloud platform-based worksite behavioural optimization system as claimed in claim 1, wherein in step S3, the cloud server generates and stores cloud end gate inhibition codes in the cloud server by:
performing hash function operation on the personal identity information of the construction workers recorded in the cloud server to obtain Yun Duanmen forbidden codes;
Figure FDA0004142554260000041
/>
o () represents a hash function operation;
x' represents personal identity information of a construction worker input into the cloud server;
x' represents a cloud end gate forbidden code;
Figure FDA0004142554260000042
representing an access code update character string;
-representing a string connector;
the personal identity information x' of the construction workers recorded in the cloud server is x 1 ″、x 2 ″、x 3 ″、x 4 ″、x 5 "one or any combination;
wherein x is 1 "represents the name of the construction worker entering the cloud server;
x 2 "means contact phone of construction worker entered into cloud server;
x 3 "means dormitory address of construction worker entered into cloud server;
x 4 "represents the name of the emergency contact entered into the cloud server;
x 5 "emergency contact phone representing emergency contact entered into cloud server;
when the personal identity information x' of the construction worker recorded in the cloud server is x 1 ″、x 2 ″、x 3 ″、x 4 ″、x 5 One of the two; x' =x 1 "or x' =x 2 "or x' =x 3 "or x' =x 4 "or x' =x 5 ″;
When the personal identity information x' of the construction worker recorded in the cloud server is x 1 ″、x 2 ″、x 3 ″、x 4 ″、x 5 "second, third, fourth, fifth hour; sequentially numbering the two components, wherein the sequence corresponds to x 1 ″′、x 2 ″′,x 1 ″′、x 2 ″′、x 3 ″′,x 1 ″′、x 2 ″′、x 3 ″′、x 4 ″′,x 1 ″′、x 2 ″′、x 3 ″′、x 4 ″′、x 5 ″′;x′=x 1 ″′-x 2 "or x 1 ″′-x 2 ″′-x 3 "or x 1 ″′-x 2 ″′-x 3 ″′-x 4 "or x 1 ″′-x 2 ″′-x 3 ″′-x 4 ″′-x 5 "3"; -representing a string connector;
instant entry cloud serviceThe personal identity information x' of the construction workers is x 1 ″、x 2 ″、x 3 ″、x 4 ″、x 5 Second time; sequentially numbering the two components, wherein the sequence corresponds to x 1 ″′、x 2 ″′;x′=x 1 ″′-x 2 ″′;
Building worker personal identity information x' recorded into cloud server is x 1 ″、x 2 ″、x 3 ″、x 4 ″、x 5 Third, the third time; sequentially numbering the two components, wherein the sequence corresponds to x 1 ″′、x 2 ″′、x 3 ″′;x′=x 1 ″′-x 2 ″′-x 3 ″′;
Building worker personal identity information x' recorded into cloud server is x 1 ″、x 2 ″、x 3 ″、x 4 ″、x 5 "four hours; sequentially numbering the two components, wherein the sequence corresponds to x 1 ″′、x 2 ″′、x 3 ″′、x 4 ″′;x′=x 1 ″′-x 2 ″′-x 3 ″′-x 4 ″′;
Building worker personal identity information x' recorded into cloud server is x 1 ″、x 2 ″、x 3 ″、x 4 ″、x 5 Five hours; sequentially numbering the two components, wherein the sequence corresponds to x 1 ″′、x 2 ″′、x 3 ″′、x 4 ″′、x 5 ″′;x′=x 1 ″′-x 2 ″′-x 3 ″′-x 4 ″′-x 5 ″′;
The cloud server judges whether the access control code stored in the cloud server is consistent with the access control code received by the access control cloud server:
If the door control code stored in the cloud server is consistent with the door control code received by the door control cloud server, the cloud server sends the door control door opening code to the door control, and the door control is opened;
if the access control code stored in the cloud server is inconsistent with the access control code received by the access control cloud server, transmitting the video image of the shot time period to the cloud server.
6. The intelligent cloud platform-based worksite behavioural optimization system as claimed in claim 1, wherein in step S2, the method for generating gate inhibition codes by gate inhibition comprises:
the access control obtains the physical address of the PCB wireless transceiver module in the safety helmet to perform hash function operation to obtain an access control code;
Figure FDA0004142554260000051
o () represents a hash function operation;
z represents the physical address of the PCB wireless transceiver module in the helmet;
z represents a gate inhibition code;
Figure FDA0004142554260000061
representing an access code update character string;
-representing a string connector;
the physical address z of the PCB wireless transceiver module in the safety helmet is z 1 、z 2 、z 3 One or any combination of the above;
wherein z is 1 Representing the physical address of the PCB Blue Tooth module;
z 2 representing the physical address of the PCB WiFi module;
z 3 representing the physical address of the PCB NFC module;
when the physical address z of the PCB wireless transceiver module in the safety helmet is z 1 、z 2 、z 3 One of them; z=z 1 Or z=z 2 Or z=z 3
When the physical address z of the PCB wireless transceiver module in the safety helmet is z 1 、z 2 、z 3 Second and third; sequentially numbering the two components, wherein the corresponding components are z 1 ′、z 2 ′,z 1 ′、z 2 ′、z 3 ′;z=z 1 ′-z 2 ' or z 1 ′-z 2 ′-z 3 'A'; -representing a string connector;
namely, the physical address z of the PCB wireless transceiver module in the safety helmet is z 1 、z 2 、z 3 Secondly, the second time is that; sequentially numbering the two components, wherein the corresponding components are z 1 ′、z 2 ′;z=z 1 ′-z 2 ′;
Physical address z of PCB wireless transceiver module in safety helmet is z 1 、z 2 、z 3 Thirdly, the third step is to use the device; sequentially numbering the two components, wherein the corresponding components are z 1 ′、z 2 ′、z 3 ′;z=z 1 ′-z 2 ′-z 3 ′。
7. The intelligent cloud platform-based worksite behavioural optimization system as claimed in claim 1, wherein in step S3, the cloud server generates and stores cloud end gate inhibition codes in the cloud server by:
performing hash function operation on the physical address of the PCB wireless transceiver module recorded in the cloud server to obtain Yun Duanmen forbidden codes;
Figure FDA0004142554260000062
o () represents a hash function operation;
h' represents the physical address of the PCB wireless transceiver module input into the cloud server;
h' represents a cloud end gate forbidden code;
Figure FDA0004142554260000071
representing an access code update character string;
-representing a string connector;
the physical address h' of the wireless transceiver module of the PCB is recorded as h 1 ″、h 2 ″、h 3 "one or any combination;
Wherein h is 1 "the physical address of the PCB Blue Tooth module recorded in the cloud server;
h 2 "the physical address of the PCB WiFi module recorded in the cloud server;
h 3 "represents the physical address of the PCB NFC module entered into the cloud server;
when the physical address h' of the PCB wireless transceiver module input into the cloud server is h 1 ″、h 2 ″、h 3 One of the two; h' =h 1 "or h' =h 2 "or h' =h 3 ″;
When the physical address h' of the PCB wireless transceiver module input into the cloud server is h 1 ″、h 2 ″、h 3 Second and third times; sequentially numbering the two parts, wherein the sequence is corresponding to h 1 ″′、h 2 ″′,h 1 ″′、h 2 ″′、h 3 ″′;h′=h 1 ″′-h 2 "'or h' =h 1 ″′-h 2 ″′-h 3 "3"; -representing a string connector;
namely, the physical address h' of the PCB wireless transceiver module input into the cloud server is h 1 ″、h 2 ″、h 3 Second time; sequentially numbering the two parts, wherein the sequence is corresponding to h 1 ″′、h 2 ″′;h′=h 1 ″′-h 2 ″′;
The physical address h' of the PCB wireless transceiver module recorded in the cloud server is h 1 ″、h 2 ″、h 3 Third, the third time; sequentially numbering the two parts, wherein the sequence is corresponding to h 1 ″′、h 2 ″′、h 3 ″′;h′=h 1 ″′-h 2 ″′-h 3 ″′;
The cloud server judges whether the access control code stored in the cloud server is consistent with the access control code received by the access control cloud server:
if the door control code stored in the cloud server is consistent with the door control code received by the door control cloud server, the cloud server sends the door control door opening code to the door control, and the door control is opened;
If the access control code stored in the cloud server is inconsistent with the access control code received by the access control cloud server, transmitting the video image of the shot time period to the cloud server.
8. The intelligent cloud platform-based worksite behavioural optimization system as claimed in claim 1, wherein in step S1, the method of triggering the access controller to wake up the access wireless transceiver module comprises manual triggering or/and automatic triggering.
CN202011216871.9A 2020-11-04 2020-11-04 Building site behavior personnel optimization method based on intelligent cloud platform Active CN112562153B (en)

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